Skip to main content
Top

2021 | OriginalPaper | Chapter

11. Templated Systems

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

The present chapter deals with electrodeposition methods in which the shape of the deposit is determined by the geometrical constraints of a non-electroactive material exhibiting a condensed phase, which will be termed hereinafter as template. The condensed phase that constitutes the template is solid in most of the cases (nanoporous templates and those obtained by the self-assembly of sub-microscopic solid particles). In a few cases, the template-forming material is not solid; this is the case for either lyotropic templates that are liquid crystalline or molecular assemblies. The spatial constraint defined by the template has a much longer temporal stability than the typical deposition time of the nanoobjects into the template. Template preparation techniques are summarized shortly, and the emphasis is on the electrochemical methods used for creating nanostructures in the templates.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
1.
go back to reference Piraux L, Dubois S, Demoustier-Champagne S (1997) Nucl Instrum Meth B 131:357–363CrossRef Piraux L, Dubois S, Demoustier-Champagne S (1997) Nucl Instrum Meth B 131:357–363CrossRef
6.
go back to reference Pérez-Page M, Yu E, Li J, Rahman M, Dryden DM, Vidu R, Stroeve P (2016) Adv Colloid Interfac 234:51–79CrossRef Pérez-Page M, Yu E, Li J, Rahman M, Dryden DM, Vidu R, Stroeve P (2016) Adv Colloid Interfac 234:51–79CrossRef
8.
go back to reference Li C, Iqbal M, Lin J, Luo X, Jiang B, Malgras V, Wu KCW, Kim J, Yamauchi Y (2018) Acc Chem Res 51:1764–1773PubMedCrossRef Li C, Iqbal M, Lin J, Luo X, Jiang B, Malgras V, Wu KCW, Kim J, Yamauchi Y (2018) Acc Chem Res 51:1764–1773PubMedCrossRef
11.
go back to reference Lupu N (ed) (2010) Electrodeposited nanowires and their applications. Intech, Vukovar Lupu N (ed) (2010) Electrodeposited nanowires and their applications. Intech, Vukovar
12.
17.
go back to reference Rauber M, Alber I, Müller S, Neumann R, Picht O, Roth C, Schökel A, Toimil-Molares ME, Ensinger W (2011) Nano Lett 11:2304–2310PubMedCrossRef Rauber M, Alber I, Müller S, Neumann R, Picht O, Roth C, Schökel A, Toimil-Molares ME, Ensinger W (2011) Nano Lett 11:2304–2310PubMedCrossRef
18.
go back to reference Frydrychewicz A, Bieguński AT, Jackowska K, Tsirlina GA (2008) J Solid State Electrochem 12:1085–1091CrossRef Frydrychewicz A, Bieguński AT, Jackowska K, Tsirlina GA (2008) J Solid State Electrochem 12:1085–1091CrossRef
20.
go back to reference Schönenberger C, van der Zande BMI, Fokkink LGJ, Henny M, Schmid C, Kru1ger M, Bachtold A, Huber R, Birk H, Staufer U (1997) J Phys Chem B 101:5497–5505 Schönenberger C, van der Zande BMI, Fokkink LGJ, Henny M, Schmid C, Kru1ger M, Bachtold A, Huber R, Birk H, Staufer U (1997) J Phys Chem B 101:5497–5505
21.
go back to reference Konishi Y, Motoyama M, Matsushima H, Fukunaka Y, Ishii R, Ito Y (2003) J Electroanal Chem 559:149–153CrossRef Konishi Y, Motoyama M, Matsushima H, Fukunaka Y, Ishii R, Ito Y (2003) J Electroanal Chem 559:149–153CrossRef
23.
go back to reference Riveros G, Gómez H, Cortes A, Marotti RE, Dalchiele EA (2005) Appl Phys A 81:17–24CrossRef Riveros G, Gómez H, Cortes A, Marotti RE, Dalchiele EA (2005) Appl Phys A 81:17–24CrossRef
24.
go back to reference Motoyama M, Fukunaka Y, Sakka T, Ogata YH, Kikuchi S (2005) J Electroanal Chem 584:84–91CrossRef Motoyama M, Fukunaka Y, Sakka T, Ogata YH, Kikuchi S (2005) J Electroanal Chem 584:84–91CrossRef
25.
26.
27.
go back to reference Bahari Mollamahale Y, Ghorbani M, Dolati A, Hosseini D (2018) Mater Chem Phys 213:67–75CrossRef Bahari Mollamahale Y, Ghorbani M, Dolati A, Hosseini D (2018) Mater Chem Phys 213:67–75CrossRef
28.
go back to reference Napolskii KS, Roslyakov IV, Eliseev AA, Petukhova DI, Lukashin AV, Chen SF, Liu CP, Tsirlina GA (2011) Electrochim Acta 56:2378–2384CrossRef Napolskii KS, Roslyakov IV, Eliseev AA, Petukhova DI, Lukashin AV, Chen SF, Liu CP, Tsirlina GA (2011) Electrochim Acta 56:2378–2384CrossRef
29.
30.
go back to reference Linpé W, Harlow GS, Evertsson J, Hejral U, Abbondanza G, Lenrick F, Seifert S, Felici R, Vinogradov NA, Lundgren E (2019) ACS Appl Nano Mater 2:3031–3038CrossRef Linpé W, Harlow GS, Evertsson J, Hejral U, Abbondanza G, Lenrick F, Seifert S, Felici R, Vinogradov NA, Lundgren E (2019) ACS Appl Nano Mater 2:3031–3038CrossRef
31.
go back to reference Vázquez M, Hernández-Vélez M, Pirota K, Asenjo A, Navas D, Velázquez J, Vargas P, Ramos C (2004) Eur Phys J B 40:489–497CrossRef Vázquez M, Hernández-Vélez M, Pirota K, Asenjo A, Navas D, Velázquez J, Vargas P, Ramos C (2004) Eur Phys J B 40:489–497CrossRef
32.
go back to reference Proenca MP, Sousa CT, Ventura J, Vazquez M, Araujo JP (2012) Electrochim Acta 72:215–221CrossRef Proenca MP, Sousa CT, Ventura J, Vazquez M, Araujo JP (2012) Electrochim Acta 72:215–221CrossRef
33.
go back to reference Rauber M, Brötz J, Duan J, Liu J, Müller S, Neumann R, Picht O, Toimil-Molares ME, Ensinger W (2010) J Phys Chem C 114:22502–22507CrossRef Rauber M, Brötz J, Duan J, Liu J, Müller S, Neumann R, Picht O, Toimil-Molares ME, Ensinger W (2010) J Phys Chem C 114:22502–22507CrossRef
34.
go back to reference Tsyntsaru N, Silkin S, Cesiulis H, Guerrero M, Pellicer E, Sort J (2016) Electrochim Acta 188:589–601CrossRef Tsyntsaru N, Silkin S, Cesiulis H, Guerrero M, Pellicer E, Sort J (2016) Electrochim Acta 188:589–601CrossRef
35.
go back to reference Bond AM, Luscombe D, Oldham KB, Zoski CG (1988) J Electroanal Chem 249:1–14CrossRef Bond AM, Luscombe D, Oldham KB, Zoski CG (1988) J Electroanal Chem 249:1–14CrossRef
36.
37.
go back to reference Valizadeh S, George JM, Leisner P, Hultman L (2001) Electrochim Acta 47:865–874CrossRef Valizadeh S, George JM, Leisner P, Hultman L (2001) Electrochim Acta 47:865–874CrossRef
38.
39.
40.
go back to reference Choi J, Sauer G, Nielsch K, Wehrspohn RB, Gösele U (2003) Chem Mater 15:776–779CrossRef Choi J, Sauer G, Nielsch K, Wehrspohn RB, Gösele U (2003) Chem Mater 15:776–779CrossRef
41.
go back to reference Riveros G, Green S, Cortes A, Gómez H, Marotti RE, Dalchiele EA (2006) Nanotechnology 17:561–570CrossRef Riveros G, Green S, Cortes A, Gómez H, Marotti RE, Dalchiele EA (2006) Nanotechnology 17:561–570CrossRef
42.
go back to reference Dalchiele EA, Marotti RE, Cortes A, Riveros G, Gómez H, Martínez L, Romero R, Leinend D, Martin F, Ramos-Barrado JR (2007) Physica E 37:184–188CrossRef Dalchiele EA, Marotti RE, Cortes A, Riveros G, Gómez H, Martínez L, Romero R, Leinend D, Martin F, Ramos-Barrado JR (2007) Physica E 37:184–188CrossRef
43.
go back to reference Dobrev D, Vetter J, Angert N, Neumann R (2000) Electrochim Acta 45:3117–3125CrossRef Dobrev D, Vetter J, Angert N, Neumann R (2000) Electrochim Acta 45:3117–3125CrossRef
44.
go back to reference Foss CA, Hornyak GL, Stockert JA, Martin CR (1992) J Phys Chem 96:7497–7499CrossRef Foss CA, Hornyak GL, Stockert JA, Martin CR (1992) J Phys Chem 96:7497–7499CrossRef
45.
go back to reference van der Zande BMI, Böhmer MR, Fokkink LGJ, Schönenberger C (2000) Langmuir 16:451–458CrossRef van der Zande BMI, Böhmer MR, Fokkink LGJ, Schönenberger C (2000) Langmuir 16:451–458CrossRef
46.
47.
go back to reference Chtanko N, Toimil Molares ME, Cornelius T, Dobrev D, Neumann R (2004) J Phys Chem B 108:9950–9954CrossRef Chtanko N, Toimil Molares ME, Cornelius T, Dobrev D, Neumann R (2004) J Phys Chem B 108:9950–9954CrossRef
48.
49.
50.
51.
go back to reference Darques M, Piraux L, Encinas A, Bayle-Guillemaud P, Popa A, Ebels U (2005) Appl Phys Lett 86:072508(1–3) Darques M, Piraux L, Encinas A, Bayle-Guillemaud P, Popa A, Ebels U (2005) Appl Phys Lett 86:072508(1–3)
52.
53.
go back to reference Cho JU, Wu JH, Min JH, Ko SP, Soh JY, Liu QX, Kim YK (2006) J Magn Magn Mater 303:e281–e285CrossRef Cho JU, Wu JH, Min JH, Ko SP, Soh JY, Liu QX, Kim YK (2006) J Magn Magn Mater 303:e281–e285CrossRef
54.
go back to reference Zhang J, Jones GA, Shen TH, Donnelly SE, Li G (2007) J Appl Phys 101:054310(1–5) Zhang J, Jones GA, Shen TH, Donnelly SE, Li G (2007) J Appl Phys 101:054310(1–5)
55.
go back to reference Huang XH, Li GH, Dou XC, Li L (2009) J Appl Phys 105:084306(1–4) Huang XH, Li GH, Dou XC, Li L (2009) J Appl Phys 105:084306(1–4)
56.
go back to reference Ren Y, Liu QF, Li SL, Wang JB, Han XH (2009) J Magn Magn Mater 321:226–230CrossRef Ren Y, Liu QF, Li SL, Wang JB, Han XH (2009) J Magn Magn Mater 321:226–230CrossRef
57.
go back to reference Cattaneo L, Franz S, Albertini F, Ranzieri P, Vicenzo A, Bestetti M, Cavallotti PL (2012) Electrochim Acta 85:57–65CrossRef Cattaneo L, Franz S, Albertini F, Ranzieri P, Vicenzo A, Bestetti M, Cavallotti PL (2012) Electrochim Acta 85:57–65CrossRef
58.
go back to reference Thongmee S, Pang HL, Ding J, Lin JY (2009) J Magn Magn Mater 321:2712–2716CrossRef Thongmee S, Pang HL, Ding J, Lin JY (2009) J Magn Magn Mater 321:2712–2716CrossRef
59.
go back to reference Ohgai T, Gravier L, Hoffer X, Lindeberg M, Hjort K, Spohr R, Ansermet JP (2003) J Phys D Appl Phys 36:3109–3114CrossRef Ohgai T, Gravier L, Hoffer X, Lindeberg M, Hjort K, Spohr R, Ansermet JP (2003) J Phys D Appl Phys 36:3109–3114CrossRef
60.
go back to reference Maurer F, Brötz J, Karim S, Toimil Molares ME, Trautmann C, Fuess H (2007) Nanotechnology 18:135709(1–8) Maurer F, Brötz J, Karim S, Toimil Molares ME, Trautmann C, Fuess H (2007) Nanotechnology 18:135709(1–8)
61.
go back to reference Gao T, Meng GW, Zhang J, Wang YW, Liang CH, Fan JC, Zhang LD (2001) Appl Phys A 73:251–254CrossRef Gao T, Meng GW, Zhang J, Wang YW, Liang CH, Fan JC, Zhang LD (2001) Appl Phys A 73:251–254CrossRef
63.
64.
go back to reference AIMawlawi D, Coombs N, Moskovits M (1991) J Appl Phys 70:4421–4425 AIMawlawi D, Coombs N, Moskovits M (1991) J Appl Phys 70:4421–4425
65.
go back to reference Menon L, Zheng M, Zeng H, Bandyopadhyay S, Sellmyer DJ (2000) J Electron Mater 29:510–515 Menon L, Zheng M, Zeng H, Bandyopadhyay S, Sellmyer DJ (2000) J Electron Mater 29:510–515
66.
67.
go back to reference Hernández-Vélez M, Pirota KR, Pászti F, Navas D, Climent A, Vázquez M (2005) Appl Phys A 80:1701–1706CrossRef Hernández-Vélez M, Pirota KR, Pászti F, Navas D, Climent A, Vázquez M (2005) Appl Phys A 80:1701–1706CrossRef
68.
go back to reference Meng G, Cao A, Cheng JY, Vijayaraghavan A, Jung YJ, Shima M, Ajayan PM (2005) J Appl Phys 97:064303(1–5) Meng G, Cao A, Cheng JY, Vijayaraghavan A, Jung YJ, Shima M, Ajayan PM (2005) J Appl Phys 97:064303(1–5)
69.
go back to reference Pan H, Liu B, Yi J, Poh C, Lim S, Ding J, Feng Y, Huan CHA, Lin J (2005) J Phys Chem B 109:3094–3098PubMedCrossRef Pan H, Liu B, Yi J, Poh C, Lim S, Ding J, Feng Y, Huan CHA, Lin J (2005) J Phys Chem B 109:3094–3098PubMedCrossRef
70.
71.
go back to reference Yu CY, Yu YL, Sun HY, Xu T, Li XH, Li W, Gao ZS, Zhang XY (2007) Mater Lett 61:1859–1862CrossRef Yu CY, Yu YL, Sun HY, Xu T, Li XH, Li W, Gao ZS, Zhang XY (2007) Mater Lett 61:1859–1862CrossRef
73.
go back to reference Yue G, Xu Q, Meng G, He X, Han F, Zhang L (2009) J Alloy Compd 477:L30–L34CrossRef Yue G, Xu Q, Meng G, He X, Han F, Zhang L (2009) J Alloy Compd 477:L30–L34CrossRef
74.
go back to reference Cortés A, Riveros G, Palma JL, Denardin JC, Marotti RE, Dalchiele EA, Gómez H (2009) J Nanosci Nanotechnol 9:1992–2000PubMedCrossRef Cortés A, Riveros G, Palma JL, Denardin JC, Marotti RE, Dalchiele EA, Gómez H (2009) J Nanosci Nanotechnol 9:1992–2000PubMedCrossRef
75.
go back to reference Chen SF, Wei HH, Liu SP, Hsu CY, Huang JCA (2010) Nanotechnology 21:425602(1–5). Chen SF, Wei HH, Liu SP, Hsu CY, Huang JCA (2010) Nanotechnology 21:425602(1–5).
78.
81.
82.
go back to reference Zhang X, Ding Y, Zhang Y, Hao Y, Meng G, Zhang L (2007) J Therm Anal Calorim 89:493–497CrossRef Zhang X, Ding Y, Zhang Y, Hao Y, Meng G, Zhang L (2007) J Therm Anal Calorim 89:493–497CrossRef
84.
85.
go back to reference Zhu H, Yang SG, Ni G, Tang SL, Du YW (2001) J Phys Condens Matter 13:1727–1731CrossRef Zhu H, Yang SG, Ni G, Tang SL, Du YW (2001) J Phys Condens Matter 13:1727–1731CrossRef
86.
87.
go back to reference Dragos O, Chiriac H, Lupu N, Grigoras M, Tabakovic I (2016) J Electrochem Soc 163:D83–D94CrossRef Dragos O, Chiriac H, Lupu N, Grigoras M, Tabakovic I (2016) J Electrochem Soc 163:D83–D94CrossRef
88.
go back to reference Thongmee S, Pang HL, Yi JB, Ding J, Lin JY, Van LH (2009) Acta Mater 57:2482–2487CrossRef Thongmee S, Pang HL, Yi JB, Ding J, Lin JY, Van LH (2009) Acta Mater 57:2482–2487CrossRef
89.
90.
go back to reference Talapatra S, Tang X, Padi M, Kim T, Vajtai R, Sastry GVS, Shima M, Deevi SC, Ajayan PM (2009) J Mater Sci 44:2271–2275CrossRef Talapatra S, Tang X, Padi M, Kim T, Vajtai R, Sastry GVS, Shima M, Deevi SC, Ajayan PM (2009) J Mater Sci 44:2271–2275CrossRef
91.
go back to reference Aravamudhan S, Singleton J, Goddard PA, Bhansali S (2009) J Phys D Appl Phys 42:115008(1–9) Aravamudhan S, Singleton J, Goddard PA, Bhansali S (2009) J Phys D Appl Phys 42:115008(1–9)
92.
go back to reference Salem MS, Sergelius P, Zierold R, Montero Moreno JM, Görlitz D, Nielsch K (2012) J Mater Chem 22:8549–8557CrossRef Salem MS, Sergelius P, Zierold R, Montero Moreno JM, Görlitz D, Nielsch K (2012) J Mater Chem 22:8549–8557CrossRef
93.
go back to reference Rosa WO, Vivas LG, Pirota KR, Asenjo A, Vázquez M (2012) J Magn Magn Mater 324:3679–3682CrossRef Rosa WO, Vivas LG, Pirota KR, Asenjo A, Vázquez M (2012) J Magn Magn Mater 324:3679–3682CrossRef
94.
go back to reference Ghemes A, Dragos-Pinzaru O, Chiriac H, Lupu N, Grigoras M, Shore D, Stadler B, Tabakovic I (2017) J Electrochem Soc 164:D13–D22CrossRef Ghemes A, Dragos-Pinzaru O, Chiriac H, Lupu N, Grigoras M, Shore D, Stadler B, Tabakovic I (2017) J Electrochem Soc 164:D13–D22CrossRef
95.
96.
go back to reference Chu SZ, Inoue S, Wada K, Kanke Y, Kurashima K (2005) J Electrochem Soc 152:C42–C47CrossRef Chu SZ, Inoue S, Wada K, Kanke Y, Kurashima K (2005) J Electrochem Soc 152:C42–C47CrossRef
97.
go back to reference Gao TR, Yin LF, Tian CS, Lu M, Sang H, Zhou SM (2006) J Magn Magn Mater 300:471–478CrossRef Gao TR, Yin LF, Tian CS, Lu M, Sang H, Zhou SM (2006) J Magn Magn Mater 300:471–478CrossRef
98.
go back to reference Dahmane Y, Cagnon L, Voiron J, Pairis S, Bacia M, Ortega L, Benbrahim N, Kadri A (2006) J Phys D Appl Phys 39:4523–4528CrossRef Dahmane Y, Cagnon L, Voiron J, Pairis S, Bacia M, Ortega L, Benbrahim N, Kadri A (2006) J Phys D Appl Phys 39:4523–4528CrossRef
100.
go back to reference Fei XL, Tang SL, Wang RL, Su HL, Du YW (2007) Solid State Commun 141:25–28CrossRef Fei XL, Tang SL, Wang RL, Su HL, Du YW (2007) Solid State Commun 141:25–28CrossRef
101.
go back to reference Gao JH, Sun DL, Zhang XQ, Zhan QF, He W, Sun Y, Cheng ZH (2008) Appl Phys Lett 92:102501(1–3) Gao JH, Sun DL, Zhang XQ, Zhan QF, He W, Sun Y, Cheng ZH (2008) Appl Phys Lett 92:102501(1–3)
102.
go back to reference Shamaila S, Sharif R, Riaz S, Ma M, Khaleeq-ur-Rahman M, Han XF (2008) J Magn Magn Mater 320:1803–1809CrossRef Shamaila S, Sharif R, Riaz S, Ma M, Khaleeq-ur-Rahman M, Han XF (2008) J Magn Magn Mater 320:1803–1809CrossRef
103.
go back to reference Khurshid H, Huang YH, Bonder MJ, Hadjipanayis GC (2009) J Magn Magn Mater 321:277–280CrossRef Khurshid H, Huang YH, Bonder MJ, Hadjipanayis GC (2009) J Magn Magn Mater 321:277–280CrossRef
104.
go back to reference Liu L, Huang Z, Wang D, Scholz R, Pippel E (2011) Nanotechnology 22:105604(1–6) Liu L, Huang Z, Wang D, Scholz R, Pippel E (2011) Nanotechnology 22:105604(1–6)
107.
go back to reference Garcia-Torres J, Gómez E, Vallés E (2012) J Phys Chem C 116:12250–12257CrossRef Garcia-Torres J, Gómez E, Vallés E (2012) J Phys Chem C 116:12250–12257CrossRef
108.
go back to reference García J, Prida VM, Vivas LG, Hernando B, Barriga-Castro ED, Mendoza-Reséndez R, Luna C, Escrige J, Vázquez M (2015) J Mater Chem 3:4688–4697 García J, Prida VM, Vivas LG, Hernando B, Barriga-Castro ED, Mendoza-Reséndez R, Luna C, Escrige J, Vázquez M (2015) J Mater Chem 3:4688–4697
109.
go back to reference Enculescu I, Toimil-Molares ME, Daub M, Westerberg L, Neumann R, Spohr R (2007) Appl Phys A 86:43–48CrossRef Enculescu I, Toimil-Molares ME, Daub M, Westerberg L, Neumann R, Spohr R (2007) Appl Phys A 86:43–48CrossRef
110.
111.
go back to reference Yoo E, Moon JH, Jeon JS, Kim Y, Ahn JP, Kim YK (2020) Mater Charact 166:110451(1–9). Yoo E, Moon JH, Jeon JS, Kim Y, Ahn JP, Kim YK (2020) Mater Charact 166:110451(1–9).
112.
go back to reference Safeer A, Ahmad N, Khan S, Azam LA, Bashir D (2019) J Appl Phys 125:034302(1–10). Safeer A, Ahmad N, Khan S, Azam LA, Bashir D (2019) J Appl Phys 125:034302(1–10).
113.
go back to reference Galdun L, Szabo P, Vega V, Barriga-Castro ED, Mendoza-Reséndez R, Luna C, Kovac J, Milkovic O, Varga R, Prida VM (2020) ACS Appl Nano Mater 3:7438–7445CrossRef Galdun L, Szabo P, Vega V, Barriga-Castro ED, Mendoza-Reséndez R, Luna C, Kovac J, Milkovic O, Varga R, Prida VM (2020) ACS Appl Nano Mater 3:7438–7445CrossRef
114.
go back to reference Leprince-Wang Y, Wang GY, Zhang XZ, Yu DP (2006) J Crystal Growth 287:89–93CrossRef Leprince-Wang Y, Wang GY, Zhang XZ, Yu DP (2006) J Crystal Growth 287:89–93CrossRef
115.
116.
117.
go back to reference Santamaria M, Bocchetta P, Di Quarto F (2009) Electrochem Commun 11:580–584CrossRef Santamaria M, Bocchetta P, Di Quarto F (2009) Electrochem Commun 11:580–584CrossRef
118.
go back to reference Gomez H, Riveros G, Ramirez D, Henriquez R, Schrebler R, Marotti R, Dalchiele E (2012) J Solid State Electrochem 16:197–204CrossRef Gomez H, Riveros G, Ramirez D, Henriquez R, Schrebler R, Marotti R, Dalchiele E (2012) J Solid State Electrochem 16:197–204CrossRef
119.
120.
go back to reference Xu CL, Bao SJ, Kong LB, Li H, Li HL (2006) J Solid State Chem 179:1351–1355CrossRef Xu CL, Bao SJ, Kong LB, Li H, Li HL (2006) J Solid State Chem 179:1351–1355CrossRef
121.
go back to reference Frantz C, Stein N, Zhang Y, Bouzy E, Picht O, Toimil-Molares ME, Boulanger C (2012) Electrochim Acta 69:30–37CrossRef Frantz C, Stein N, Zhang Y, Bouzy E, Picht O, Toimil-Molares ME, Boulanger C (2012) Electrochim Acta 69:30–37CrossRef
122.
123.
go back to reference Zhao AW, Meng GW, Zhang LD, Gao T, Sun SH, Pang YT (2003) Appl Phys A 76:537–539CrossRef Zhao AW, Meng GW, Zhang LD, Gao T, Sun SH, Pang YT (2003) Appl Phys A 76:537–539CrossRef
126.
127.
128.
go back to reference Routkevitch D, Bigioni T, Moskovits M, Xu JM (1996) J Phys Chem 100:14037–14047CrossRef Routkevitch D, Bigioni T, Moskovits M, Xu JM (1996) J Phys Chem 100:14037–14047CrossRef
129.
go back to reference Xu D, Xu Y, Chen D, Guo G, Gui L, Tang Y (2000) Chem Phys Lett 325:340–344CrossRef Xu D, Xu Y, Chen D, Guo G, Gui L, Tang Y (2000) Chem Phys Lett 325:340–344CrossRef
130.
go back to reference Sun H, Li X, Chen Y, Li W, Li F, Liu B, Zhang X (2008) Nanotechnology 19:225601(1–8) Sun H, Li X, Chen Y, Li W, Li F, Liu B, Zhang X (2008) Nanotechnology 19:225601(1–8)
131.
132.
go back to reference Peng XS, Meng GW, Zhang J, Zhao LX, Wang XF, Wang YW, Zhang LD (2001) J Phys D Appl Phys 34:3224–3228CrossRef Peng XS, Meng GW, Zhang J, Zhao LX, Wang XF, Wang YW, Zhang LD (2001) J Phys D Appl Phys 34:3224–3228CrossRef
133.
go back to reference Sun HY, Li HX, Li W, Li F, Liu BT, Zhang XY (2007) Nanotechnology 18:115604(1–4) Sun HY, Li HX, Li W, Li F, Liu BT, Zhang XY (2007) Nanotechnology 18:115604(1–4)
134.
go back to reference Martín-González M, Prieto AL, Knox MS, Gronsky R, Sands T, Stacy AM (2003) Chem Mater 15:1676–1681CrossRef Martín-González M, Prieto AL, Knox MS, Gronsky R, Sands T, Stacy AM (2003) Chem Mater 15:1676–1681CrossRef
135.
136.
137.
go back to reference Martín-González M, Prieto AL, Gronsky L, Sands T, Stacy AM (2003) Adv Mater 15:1003–1006CrossRef Martín-González M, Prieto AL, Gronsky L, Sands T, Stacy AM (2003) Adv Mater 15:1003–1006CrossRef
138.
go back to reference Martín-González M, Snyder GJ, Prieto AL, Gronsky R, Sands T, Stacy AM (2003) Nano Lett 3:973–977CrossRef Martín-González M, Snyder GJ, Prieto AL, Gronsky R, Sands T, Stacy AM (2003) Nano Lett 3:973–977CrossRef
139.
140.
go back to reference Kumar S, Vohra A, Chakarvarti SK (2012) J Mater Sci Mater Electron 23:1793–1797CrossRef Kumar S, Vohra A, Chakarvarti SK (2012) J Mater Sci Mater Electron 23:1793–1797CrossRef
141.
go back to reference Jang B, Pellicer E, Guerrero M, Chen X, Choi H, Nelson BJ, Sort J, Pané S (2014) ACS Appl Mater Interfaces 6:14583–14589PubMedCrossRef Jang B, Pellicer E, Guerrero M, Chen X, Choi H, Nelson BJ, Sort J, Pané S (2014) ACS Appl Mater Interfaces 6:14583–14589PubMedCrossRef
142.
143.
go back to reference Bangar MA, Hangarter CM, Yoo B, Rheem Y, Chen W, Mulchandani A, Myung NV (2009) Electroanal 21:61–67CrossRef Bangar MA, Hangarter CM, Yoo B, Rheem Y, Chen W, Mulchandani A, Myung NV (2009) Electroanal 21:61–67CrossRef
144.
go back to reference Cai LT, Skulason H, Kushmerick JG, Pollack SK, Naciri J, Shashidhar R, Allara DL, Mallouk TE, Mayer TS (2004) J Phys Chem B 108:2827–2832CrossRef Cai LT, Skulason H, Kushmerick JG, Pollack SK, Naciri J, Shashidhar R, Allara DL, Mallouk TE, Mayer TS (2004) J Phys Chem B 108:2827–2832CrossRef
145.
go back to reference Burdick J, Alonas E, Huang HC, Rege K, Wang J (2009) Nanotechnology 20:065306(1–6) Burdick J, Alonas E, Huang HC, Rege K, Wang J (2009) Nanotechnology 20:065306(1–6)
146.
147.
148.
149.
go back to reference Guo YG, Wan LJ, Zhu CF, Yang DL, Chen DM, Bai CL (2003) Chem Mater 15:664–667CrossRef Guo YG, Wan LJ, Zhu CF, Yang DL, Chen DM, Bai CL (2003) Chem Mater 15:664–667CrossRef
150.
go back to reference Piraux L, Dubois S, Duvail JL, Ounadjela K, Fert A (1997) J Magn Magn Mater 175:127–136CrossRef Piraux L, Dubois S, Duvail JL, Ounadjela K, Fert A (1997) J Magn Magn Mater 175:127–136CrossRef
151.
go back to reference Elhoussine F, Vila L, Piraux L, Faini G (2005) J Magn Magn Mater 290–291:116–119CrossRef Elhoussine F, Vila L, Piraux L, Faini G (2005) J Magn Magn Mater 290–291:116–119CrossRef
152.
go back to reference Cho JU, Liu QX, Min JH, Ko SP, Kim YK (2006) J Magn Magn Mater 304:e213–e215CrossRef Cho JU, Liu QX, Min JH, Ko SP, Kim YK (2006) J Magn Magn Mater 304:e213–e215CrossRef
153.
go back to reference Huang X, Tan L, Cho H, Stadler BJH (2009) J Appl Phys 105:07D128(1–3). Huang X, Tan L, Cho H, Stadler BJH (2009) J Appl Phys 105:07D128(1–3).
154.
go back to reference Fedorov FS, Mönch I, Mickel C, Tschulik K, Zhao B, Uhlemann M, Gebert A, Eckert J (2013) J Electrochem Soc 160:D13–D19CrossRef Fedorov FS, Mönch I, Mickel C, Tschulik K, Zhao B, Uhlemann M, Gebert A, Eckert J (2013) J Electrochem Soc 160:D13–D19CrossRef
155.
go back to reference Kok KY, Hangarter CM, Goldsmith B, Ng IK, Saidin NB, Myung NV (2010) J Magn Magn Mater 322:3876–3881CrossRef Kok KY, Hangarter CM, Goldsmith B, Ng IK, Saidin NB, Myung NV (2010) J Magn Magn Mater 322:3876–3881CrossRef
156.
157.
158.
go back to reference Böhnert T, Niemann AC, Michel AK, Bäßler S, Gooth J, Tóth BG, Neuróhr K, Péter L, Bakonyi I, Vega V, Prida VM, Nielsch K (2014) Phys Rev B 90:165416(1–11) Böhnert T, Niemann AC, Michel AK, Bäßler S, Gooth J, Tóth BG, Neuróhr K, Péter L, Bakonyi I, Vega V, Prida VM, Nielsch K (2014) Phys Rev B 90:165416(1–11)
159.
go back to reference Zsurzsa S, Pellicer E, Sort J, Péter L, Bakonyi I (2018) J Electrochem Soc 165:D536–D542 Zsurzsa S, Pellicer E, Sort J, Péter L, Bakonyi I (2018) J Electrochem Soc 165:D536–D542
161.
go back to reference Wang H, Wu YC, Zhang L, Hu X (2006) Appl Phys Lett 89:232508(1–3) Wang H, Wu YC, Zhang L, Hu X (2006) Appl Phys Lett 89:232508(1–3)
162.
go back to reference Liu LF, Xie SS, Zhou WY (2009) J Phys D Appl Phys 42:205002(1–5) Liu LF, Xie SS, Zhou WY (2009) J Phys D Appl Phys 42:205002(1–5)
164.
go back to reference de Horne FM, Piraux L, Michotte S (2005) Appl Phys Lett 86:152510(1–3) de Horne FM, Piraux L, Michotte S (2005) Appl Phys Lett 86:152510(1–3)
166.
167.
168.
169.
go back to reference Ren Y, Wang J, Liu Q, Dai Y, Zhang B, Yan L (2011) J Mater Sci 46:7545–7550CrossRef Ren Y, Wang J, Liu Q, Dai Y, Zhang B, Yan L (2011) J Mater Sci 46:7545–7550CrossRef
170.
go back to reference Proenca MP, Sousa CT, Ventura J, Vazquez M, Araujo JP (2012) Nanoscale Res Lett 7:280(1–9) Proenca MP, Sousa CT, Ventura J, Vazquez M, Araujo JP (2012) Nanoscale Res Lett 7:280(1–9)
171.
172.
go back to reference Kumar N, Kumar R, Kumar S, Chakarvarti SK (2014) Curr Appl Phys 14:1547–1552CrossRef Kumar N, Kumar R, Kumar S, Chakarvarti SK (2014) Curr Appl Phys 14:1547–1552CrossRef
174.
175.
go back to reference Hulteen JC, Martin CR (1997) J Mater Chem 7:1075–1087 Hulteen JC, Martin CR (1997) J Mater Chem 7:1075–1087
176.
go back to reference Mollamahalle YB, Ghorbani M, Dolati A (2012) Electrochim Acta 75:157–163 CrossRef Mollamahalle YB, Ghorbani M, Dolati A (2012) Electrochim Acta 75:157–163 CrossRef
177.
178.
180.
go back to reference Zhang X, Dong D, Li D, Williams T, Wang H, Webley PA (2009) Electrochem Commun 11:190–193CrossRef Zhang X, Dong D, Li D, Williams T, Wang H, Webley PA (2009) Electrochem Commun 11:190–193CrossRef
181.
182.
183.
184.
go back to reference Wang XW, Yuan ZH, Sun SQ, Duan YQ, Bie LJ (2008) Mater Chem Phys 112:329–332CrossRef Wang XW, Yuan ZH, Sun SQ, Duan YQ, Bie LJ (2008) Mater Chem Phys 112:329–332CrossRef
185.
go back to reference Kozlovskiy AL, Shlimas DI, Shumskaya AE, Kaniukov EY, Zdorovets MV, Kadyrzhanov KK (2017) Phys Met Metallogr 118:164–169CrossRef Kozlovskiy AL, Shlimas DI, Shumskaya AE, Kaniukov EY, Zdorovets MV, Kadyrzhanov KK (2017) Phys Met Metallogr 118:164–169CrossRef
186.
go back to reference Shumskaya A, Bundyukova V, Kozlovskiy A, Zdorovets M, Kadyrzhanov K, Kalkabay Gd, Kaniukov E (2020) J Magn Magn Mater 497:165913(1–5) Shumskaya A, Bundyukova V, Kozlovskiy A, Zdorovets M, Kadyrzhanov K, Kalkabay Gd, Kaniukov E (2020) J Magn Magn Mater 497:165913(1–5)
187.
go back to reference Yang D, Meng G, Xu Q, Han F, Kong M, Zhang L (2008) J Phys Chem C 112:8614–8616CrossRef Yang D, Meng G, Xu Q, Han F, Kong M, Zhang L (2008) J Phys Chem C 112:8614–8616CrossRef
188.
go back to reference Žužek-Rožman K, Šturm S, McGuiness PJ, Kobe S (2009) IEEE Trans Magn 45:4413–4416CrossRef Žužek-Rožman K, Šturm S, McGuiness PJ, Kobe S (2009) IEEE Trans Magn 45:4413–4416CrossRef
189.
go back to reference Li L, Pan S, Dou X, Zhu Y, Huang X, Yang Y, Li G, Zhang L (2007) J Phys Chem C 111:7288–7291CrossRef Li L, Pan S, Dou X, Zhu Y, Huang X, Yang Y, Li G, Zhang L (2007) J Phys Chem C 111:7288–7291CrossRef
190.
191.
go back to reference Fukunaka Y, Motoyama M, Konishi Y, Ishii R (2006) Electrochem Solid State Lett 9:C62–C64CrossRef Fukunaka Y, Motoyama M, Konishi Y, Ishii R (2006) Electrochem Solid State Lett 9:C62–C64CrossRef
192.
193.
go back to reference Motoyama M, Fukunaka Y, Ogata YH, Prinz FB (2010) J Electrochem Soc 157:D357–D369CrossRef Motoyama M, Fukunaka Y, Ogata YH, Prinz FB (2010) J Electrochem Soc 157:D357–D369CrossRef
194.
196.
go back to reference Motoyama M, Fukunaka Y, Sakka T, Ogata YH (2007) Electrochim Acta 53:205–212CrossRef Motoyama M, Fukunaka Y, Sakka T, Ogata YH (2007) Electrochim Acta 53:205–212CrossRef
197.
198.
200.
go back to reference Wang HJ, Zou CW, Yang B, Lu HB, Tian CX, Yang HJ, Li M, Liu CS, Fu DJ, Liu JR (2009) Electrochem Commun 11:2019–2022CrossRef Wang HJ, Zou CW, Yang B, Lu HB, Tian CX, Yang HJ, Li M, Liu CS, Fu DJ, Liu JR (2009) Electrochem Commun 11:2019–2022CrossRef
202.
go back to reference Liu H, Wang F, Zhao Y, Liu J, Park KC, Endo M (2009) J Electroanal Chem 633:15–18CrossRef Liu H, Wang F, Zhao Y, Liu J, Park KC, Endo M (2009) J Electroanal Chem 633:15–18CrossRef
203.
205.
go back to reference Atalay FE, Kaya H, Yagmur V, Tari S, Atalay S, Avsar D (2010) Appl Surf Sci 256:2414–2418CrossRef Atalay FE, Kaya H, Yagmur V, Tari S, Atalay S, Avsar D (2010) Appl Surf Sci 256:2414–2418CrossRef
206.
209.
go back to reference Crossland EJW, Cunha P, Ludwigs S, Hillmyer MA, Steiner U (2011) ACS Appl Mater Interfaces 3:1375–1379PubMedCrossRef Crossland EJW, Cunha P, Ludwigs S, Hillmyer MA, Steiner U (2011) ACS Appl Mater Interfaces 3:1375–1379PubMedCrossRef
210.
go back to reference Thurn-Albrecht T, Schotter J, Kästle GA, Emley N, Shibauchi T, Krusin-Elbaum L, Guarini K, Black CT, Tuominen MT, Russell TP (2000) Science 260:2126–2129CrossRef Thurn-Albrecht T, Schotter J, Kästle GA, Emley N, Shibauchi T, Krusin-Elbaum L, Guarini K, Black CT, Tuominen MT, Russell TP (2000) Science 260:2126–2129CrossRef
211.
go back to reference Bal M, Ursache A, Tuominen MT, Goldbach JT, Russell TP (2002) ApplPhys Lett 81:3479–3481CrossRef Bal M, Ursache A, Tuominen MT, Goldbach JT, Russell TP (2002) ApplPhys Lett 81:3479–3481CrossRef
213.
go back to reference Sudha Rani V, Yoon SS, Parvatheeswara Rao B, Kim CG (2008) Mater Chem Phys 112:1133–1136CrossRef Sudha Rani V, Yoon SS, Parvatheeswara Rao B, Kim CG (2008) Mater Chem Phys 112:1133–1136CrossRef
214.
go back to reference Lee JI, Cho SH, Park SM, Kim JK, Kim JK, Yu JW, Kim JC, Russell TP (2008) Nano Lett 8:2315–2320CrossRef Lee JI, Cho SH, Park SM, Kim JK, Kim JK, Yu JW, Kim JC, Russell TP (2008) Nano Lett 8:2315–2320CrossRef
215.
go back to reference Seifarth O, Krenek R, Tokarev I, Burkov Y, Sidorenko A, Minko S, Stamm M, Schmeiβer D (2007) Thin Solid Films 515:6552–6556CrossRef Seifarth O, Krenek R, Tokarev I, Burkov Y, Sidorenko A, Minko S, Stamm M, Schmeiβer D (2007) Thin Solid Films 515:6552–6556CrossRef
216.
go back to reference Khatria MS, Schlörb H, Fähler S, Schultz L, Nandan B, Böhme M, Krenek R, Stamm M (2009) Electrochim Acta 54:2536–2539CrossRef Khatria MS, Schlörb H, Fähler S, Schultz L, Nandan B, Böhme M, Krenek R, Stamm M (2009) Electrochim Acta 54:2536–2539CrossRef
217.
go back to reference Crossland EJW, Cunha P, Scroggins S, Moratti S, Yurchenko O, Steiner U, Hillmyer MA, Ludwigs S (2010) ACS Nano 4:962–966PubMedCrossRef Crossland EJW, Cunha P, Scroggins S, Moratti S, Yurchenko O, Steiner U, Hillmyer MA, Ludwigs S (2010) ACS Nano 4:962–966PubMedCrossRef
218.
220.
go back to reference Liu SSY, Ludwigs S (2020) Macromol Rapid Commun 41:1900485(1–15) Liu SSY, Ludwigs S (2020) Macromol Rapid Commun 41:1900485(1–15)
221.
go back to reference Ursache A, Goldbach JT, Russell TP, Tuominen MT (2005) J Appl Phys 97:10J322 (1–3) Ursache A, Goldbach JT, Russell TP, Tuominen MT (2005) J Appl Phys 97:10J322 (1–3)
222.
go back to reference Frankel D, Milenkovic S, Smith AJ, Hassel AW (2009) Electrochim Acta 54:6015–6021CrossRef Frankel D, Milenkovic S, Smith AJ, Hassel AW (2009) Electrochim Acta 54:6015–6021CrossRef
223.
go back to reference Gao J, Zhao Z, Wei L, Cui K, Wang S, Li N, Guo J, Chen S, Hu Z, Liu Y (2018) Metall Mater Trans A 49:3575–3583CrossRef Gao J, Zhao Z, Wei L, Cui K, Wang S, Li N, Guo J, Chen S, Hu Z, Liu Y (2018) Metall Mater Trans A 49:3575–3583CrossRef
224.
225.
go back to reference Bello Rodriguez B, Schneider A, Hassel AW (2006) J Electrochem Soc 153:C33–C36CrossRef Bello Rodriguez B, Schneider A, Hassel AW (2006) J Electrochem Soc 153:C33–C36CrossRef
226.
go back to reference Hassel AW, Milenkovic S, Schürmann U, Greve H, Zaporojtchenko V, Adelung R, Faupe F (2007) Langmuir 23:2091–2094PubMedCrossRef Hassel AW, Milenkovic S, Schürmann U, Greve H, Zaporojtchenko V, Adelung R, Faupe F (2007) Langmuir 23:2091–2094PubMedCrossRef
227.
228.
go back to reference Bello Rodriguez B, Smith AJ, Hassel AW (2008) J Electroanal Chem 618:11–16CrossRef Bello Rodriguez B, Smith AJ, Hassel AW (2008) J Electroanal Chem 618:11–16CrossRef
229.
230.
go back to reference Gao J, Luo J, Geng H, Zhong J, Han G, Cui K, Zhao Z, Liu L (2020) Mater Chem Phys 244:122594(1–12). Gao J, Luo J, Geng H, Zhong J, Han G, Cui K, Zhao Z, Liu L (2020) Mater Chem Phys 244:122594(1–12).
231.
go back to reference Brittman S, Smith AJ, Milenkovic S, Hassel AW (2007) Electrochim Acta 53:324–329CrossRef Brittman S, Smith AJ, Milenkovic S, Hassel AW (2007) Electrochim Acta 53:324–329CrossRef
232.
go back to reference Wei L, Zhao Z, Gao J, Cui K Chen S, Guo J, Liu L (2018) J Electrochem Soc 165:E45–E49CrossRef Wei L, Zhao Z, Gao J, Cui K Chen S, Guo J, Liu L (2018) J Electrochem Soc 165:E45–E49CrossRef
234.
go back to reference Gaulding EA, Liu G, Chen CT, Löbbert L, Li A, Segev G, Eichhorn J, Aloni S, Schwartzberg AM, Sharp ID, Toma FM (2017) J Mater Chem A 5:11601–11614CrossRef Gaulding EA, Liu G, Chen CT, Löbbert L, Li A, Segev G, Eichhorn J, Aloni S, Schwartzberg AM, Sharp ID, Toma FM (2017) J Mater Chem A 5:11601–11614CrossRef
235.
236.
238.
239.
go back to reference Sun F, Cai W, Li Y, Cao B, Lu F, Duan G, Zhang L (2004) Adv Mater 16:1116–1121CrossRef Sun F, Cai W, Li Y, Cao B, Lu F, Duan G, Zhang L (2004) Adv Mater 16:1116–1121CrossRef
244.
245.
go back to reference Teranishi T, Hosoe M, Tanaka T, Miyake M (1999) J Phys Chem B 103:3818–3827CrossRef Teranishi T, Hosoe M, Tanaka T, Miyake M (1999) J Phys Chem B 103:3818–3827CrossRef
247.
go back to reference Zhang J, Wang M, Ge X, Wu M, Wu Q, Yang J, Wang M, Jin Z, Liu N (2011) J Coll Interf Sci 353:16–21CrossRef Zhang J, Wang M, Ge X, Wu M, Wu Q, Yang J, Wang M, Jin Z, Liu N (2011) J Coll Interf Sci 353:16–21CrossRef
248.
249.
go back to reference Deepak Kallepalli LN, Constantinescu C, Delaporte P, Utéza O, Grojo D (2015) J Coll Interf Sci 446:237–243CrossRef Deepak Kallepalli LN, Constantinescu C, Delaporte P, Utéza O, Grojo D (2015) J Coll Interf Sci 446:237–243CrossRef
252.
go back to reference Wijnhoven JEGJ, Zevenhuizen SJM, Hendriks MA, Vanmaekelbergh D, Kelly JJ, Vos WL (2000) Adv Mater 12:888–890CrossRef Wijnhoven JEGJ, Zevenhuizen SJM, Hendriks MA, Vanmaekelbergh D, Kelly JJ, Vos WL (2000) Adv Mater 12:888–890CrossRef
253.
go back to reference Nishikawa K, Dokko K, Kinoshita K, Woo SW, Kanamura K (2009) J Power Sources 189:726–729CrossRef Nishikawa K, Dokko K, Kinoshita K, Woo SW, Kanamura K (2009) J Power Sources 189:726–729CrossRef
255.
go back to reference Chung YW, Leu IC, Lee JH, Yen JH, Hon MH (2007) Electrochim Acta 53:1703–1707CrossRef Chung YW, Leu IC, Lee JH, Yen JH, Hon MH (2007) Electrochim Acta 53:1703–1707CrossRef
256.
go back to reference Chung YW, Leu IC, Lee JH, Yen JH, Hon MH (2007) J Electrochem Soc 154:E77–E83CrossRef Chung YW, Leu IC, Lee JH, Yen JH, Hon MH (2007) J Electrochem Soc 154:E77–E83CrossRef
257.
go back to reference Dai L, Jiang LP, Abdel-Halim ES, Zhu JJ (2011) Electrochem Commun 13:1525–1528CrossRef Dai L, Jiang LP, Abdel-Halim ES, Zhu JJ (2011) Electrochem Commun 13:1525–1528CrossRef
258.
go back to reference Chen Z, Dong H, Pan J, Zhan P, Tang C, Wang ZL (2010) Appl Phys Lett 96:051904(1–3) Chen Z, Dong H, Pan J, Zhan P, Tang C, Wang ZL (2010) Appl Phys Lett 96:051904(1–3)
259.
260.
261.
go back to reference Xu L, Zhou WL, Frommen C, Baughman RH, Zakhidov AA, Malkinski L, Wang JQ, Wiley JB (2000) Chem Commun 997–998 Xu L, Zhou WL, Frommen C, Baughman RH, Zakhidov AA, Malkinski L, Wang JQ, Wiley JB (2000) Chem Commun 997–998
262.
263.
264.
go back to reference Abdelsalam ME (2009) Cent Eur J Chem 7:446–453 Abdelsalam ME (2009) Cent Eur J Chem 7:446–453
267.
go back to reference Hung D, Liu Z, Shah N, Hao Y, Searson PC (2007) J Phys Chem C 111:3308–3313CrossRef Hung D, Liu Z, Shah N, Hao Y, Searson PC (2007) J Phys Chem C 111:3308–3313CrossRef
268.
270.
271.
272.
go back to reference Yu X, Lee YJ, Furstenberg R, White JO, Braun PV (2007) Adv Mater 19:1689–1692CrossRef Yu X, Lee YJ, Furstenberg R, White JO, Braun PV (2007) Adv Mater 19:1689–1692CrossRef
273.
274.
go back to reference Zhukov AA, Ghanem MA, Goncharov AV, de Groot PAJ, El-Hallag IS, Bartlett PN, Boardman R, Fangohr H (2004) J Magn Magn Mater 272–276:1621–1622CrossRef Zhukov AA, Ghanem MA, Goncharov AV, de Groot PAJ, El-Hallag IS, Bartlett PN, Boardman R, Fangohr H (2004) J Magn Magn Mater 272–276:1621–1622CrossRef
275.
go back to reference Zhukov AA, Goncharov AV, de Groot PAJ, Ghanem MA, El-Hallag IS, Bartlett PN, Boardman R, Fangohr H, Novosad V, Karapetrov G (2005) J Appl Phys 97:10J701(1–3) Zhukov AA, Goncharov AV, de Groot PAJ, Ghanem MA, El-Hallag IS, Bartlett PN, Boardman R, Fangohr H, Novosad V, Karapetrov G (2005) J Appl Phys 97:10J701(1–3)
276.
go back to reference Li Z, Liu Y, Liu P, Chen W, Feng S, Zhong W, Yu C (2012) RSC Adv 2:3447–3450CrossRef Li Z, Liu Y, Liu P, Chen W, Feng S, Zhong W, Yu C (2012) RSC Adv 2:3447–3450CrossRef
277.
go back to reference Zhukov AA, Goncharov AV, de Groot PAJ, Ghanem MA, El-Hallag IS, Bartlett PN, Boardman R, Fangohr H, Novosad V, Karapetrov G (2006) Appl Phys Lett 88:062511(1–3) Zhukov AA, Goncharov AV, de Groot PAJ, Ghanem MA, El-Hallag IS, Bartlett PN, Boardman R, Fangohr H, Novosad V, Karapetrov G (2006) Appl Phys Lett 88:062511(1–3)
278.
go back to reference Ke F, Huang L, Jiang H, Wei H, Yang F, Sun S (2007) Electrochem Commun 9:228–232CrossRef Ke F, Huang L, Jiang H, Wei H, Yang F, Sun S (2007) Electrochem Commun 9:228–232CrossRef
279.
go back to reference Woo SW, Okada N, Kotobuki M, Sasajima K, Munakata H, Kajihara K, Kanamura K (2010) Electrochim Acta 55:8030–8035CrossRef Woo SW, Okada N, Kotobuki M, Sasajima K, Munakata H, Kajihara K, Kanamura K (2010) Electrochim Acta 55:8030–8035CrossRef
280.
go back to reference Jin Y, Munakata H, Okada N, Kanamura K (2013) J Nanomat 937019(1–6) Jin Y, Munakata H, Okada N, Kanamura K (2013) J Nanomat 937019(1–6)
281.
go back to reference Ke FS, Huang L, Wei HB, Cai JS, Fan XY, Yang FZ, Sun SG (2007) J Power Sources 170:450–455CrossRef Ke FS, Huang L, Wei HB, Cai JS, Fan XY, Yang FZ, Sun SG (2007) J Power Sources 170:450–455CrossRef
282.
283.
go back to reference Golvano-Escobal I, de Paz-Castany R, Alcantara CCJ, Pané S, García-Lecina E, Sort J, Pellicer E (2019) Electrochim Acta 313:211–222CrossRef Golvano-Escobal I, de Paz-Castany R, Alcantara CCJ, Pané S, García-Lecina E, Sort J, Pellicer E (2019) Electrochim Acta 313:211–222CrossRef
284.
285.
286.
go back to reference Fu M, Zhou J, Li B, Huang X, Wang Y, Li L (2008) J Mater Chem 18:5986–5992CrossRef Fu M, Zhou J, Li B, Huang X, Wang Y, Li L (2008) J Mater Chem 18:5986–5992CrossRef
287.
go back to reference Zhou Q, Zhao J, Xu W, Zhao H, Wu Y, Zheng J (2008) J Phys Chem C 112:2378–2381CrossRef Zhou Q, Zhao J, Xu W, Zhao H, Wu Y, Zheng J (2008) J Phys Chem C 112:2378–2381CrossRef
288.
go back to reference Elias J, Lévy-Clément C, Bechelany M, Michler J, Wang GY, Wang Z, Philippe L (2010) Adv Mater 22:1607–1612PubMedCrossRef Elias J, Lévy-Clément C, Bechelany M, Michler J, Wang GY, Wang Z, Philippe L (2010) Adv Mater 22:1607–1612PubMedCrossRef
289.
go back to reference Zhang J, Tu JP, Cai GF, Du GH, Wang XL, Liu PC (2013) Electrochim Acta 99:1–8CrossRef Zhang J, Tu JP, Cai GF, Du GH, Wang XL, Liu PC (2013) Electrochim Acta 99:1–8CrossRef
290.
go back to reference Qi CX, Tan Z, Feng ZH, Yu LPJ (2014) Mater Sci: Mater Electron 25:1553–1558 Qi CX, Tan Z, Feng ZH, Yu LPJ (2014) Mater Sci: Mater Electron 25:1553–1558
291.
go back to reference Benedetti TM, Gonçales VR, Petri DFS, Córdoba de Torresi SI, Torresi RM (2010) J Braz Chem Soc 21:1704–1709CrossRef Benedetti TM, Gonçales VR, Petri DFS, Córdoba de Torresi SI, Torresi RM (2010) J Braz Chem Soc 21:1704–1709CrossRef
293.
294.
go back to reference Ding Y, Yang L, Li Y, Wu X, Lu Y, Zhao J (2013) J Porous Mater 20:601–605CrossRef Ding Y, Yang L, Li Y, Wu X, Lu Y, Zhao J (2013) J Porous Mater 20:601–605CrossRef
295.
go back to reference Kim J, Kim HS, Choi JH, Jeon H, Yoon Y, Liu J, Park JG, Braun PV (2014) Chem Mater 26:7051–7058CrossRef Kim J, Kim HS, Choi JH, Jeon H, Yoon Y, Liu J, Park JG, Braun PV (2014) Chem Mater 26:7051–7058CrossRef
296.
297.
go back to reference Yuan YF, Xia XH, Wu JB, Chen YB, Yang JL, Guo SY (2011) Electrochim Acta 56:1208–1212CrossRef Yuan YF, Xia XH, Wu JB, Chen YB, Yang JL, Guo SY (2011) Electrochim Acta 56:1208–1212CrossRef
298.
go back to reference Xia XH, Tu JP, Zhang J, Huang XH, Wang XL, Zhao XB (2010) Electrochim Acta 55:989–994CrossRef Xia XH, Tu JP, Zhang J, Huang XH, Wang XL, Zhao XB (2010) Electrochim Acta 55:989–994CrossRef
299.
go back to reference Martin J, Jack M, Hakimian A, Vaillancourt N, Villemure G (2016) J Electroanal Chem 780:217–224CrossRef Martin J, Jack M, Hakimian A, Vaillancourt N, Villemure G (2016) J Electroanal Chem 780:217–224CrossRef
300.
go back to reference Yan H, Yang Y, Fu Z, Yang B, Xia L, Xu Y, Fu S, Li F (2006) Chem Lett 36:864–865CrossRef Yan H, Yang Y, Fu Z, Yang B, Xia L, Xu Y, Fu S, Li F (2006) Chem Lett 36:864–865CrossRef
301.
go back to reference Pan L, Xu H, Sun Y, Zhao J, Li Y (2016) Crystals 6:76(1–9) Pan L, Xu H, Sun Y, Zhao J, Li Y (2016) Crystals 6:76(1–9)
302.
304.
go back to reference O’Hanlon S, McNulty D, O’Dwyer C (2017) J Electrochem Soc 164:D111–D119CrossRef O’Hanlon S, McNulty D, O’Dwyer C (2017) J Electrochem Soc 164:D111–D119CrossRef
305.
306.
309.
310.
311.
312.
go back to reference Zhong Q, Xu H, Ding H, Bai L, Mu Z, Xie Z, Zhao Y, Gu Z (2013) Colloid Surface A 433:59–63CrossRef Zhong Q, Xu H, Ding H, Bai L, Mu Z, Xie Z, Zhao Y, Gu Z (2013) Colloid Surface A 433:59–63CrossRef
313.
go back to reference Ghanem MA, Bartlett PN, de Groot P, Zhukov A (2004) Electrochem Commun 6:447–453CrossRef Ghanem MA, Bartlett PN, de Groot P, Zhukov A (2004) Electrochem Commun 6:447–453CrossRef
314.
315.
go back to reference Tiu BDB, Pernites RB, Foster EL, Advincula RC (2015) J Coll Interf Sci 459:86–96CrossRef Tiu BDB, Pernites RB, Foster EL, Advincula RC (2015) J Coll Interf Sci 459:86–96CrossRef
316.
go back to reference Wang J, Duan G, Liu G, Li Y, Xu L, Cai W (2015) J Mater Chem C 3:5709–5714CrossRef Wang J, Duan G, Liu G, Li Y, Xu L, Cai W (2015) J Mater Chem C 3:5709–5714CrossRef
317.
go back to reference Kim DY, Suk J, Kim DW, Kang Y, Im SH, Yang Y, Park OO (2014) J Mater Chem A 2:6396–6401CrossRef Kim DY, Suk J, Kim DW, Kang Y, Im SH, Yang Y, Park OO (2014) J Mater Chem A 2:6396–6401CrossRef
318.
320.
321.
go back to reference Alfutimi A, Curtis R, Tiddy JT, Lyotropic Surfactant Liquid Crystals: Micellar Systems. In: Goodby JW, Collings PJ, Kato T, Tschierske C, Gleeson HF, Raynes P (eds) (2014) Handbook of liquid crystals, Chapter 12.3, Wiley-VCH Verlag & Co., Weinheim Alfutimi A, Curtis R, Tiddy JT, Lyotropic Surfactant Liquid Crystals: Micellar Systems. In: Goodby JW, Collings PJ, Kato T, Tschierske C, Gleeson HF, Raynes P (eds) (2014) Handbook of liquid crystals, Chapter 12.3, Wiley-VCH Verlag & Co., Weinheim
322.
go back to reference Libster D, Aserin A, Garti N (2018) Oleogels based on nonlamellar lyotropic liquid crystalline structures for food applications. In: Marangoni AG, Nissim G (eds) Edible oleogels. Structure and health implications, 2nd edn. Elsevier Libster D, Aserin A, Garti N (2018) Oleogels based on nonlamellar lyotropic liquid crystalline structures for food applications. In: Marangoni AG, Nissim G (eds) Edible oleogels. Structure and health implications, 2nd edn. Elsevier
323.
go back to reference Jákli A, Saupe A (2006) One- and two-dimensional fluids. Properties of smectic, lamellar and columnar liquid crystals. In: Series in condensed matter physics. Taylor and Francis Group, New York and London Jákli A, Saupe A (2006) One- and two-dimensional fluids. Properties of smectic, lamellar and columnar liquid crystals. In: Series in condensed matter physics. Taylor and Francis Group, New York and London
325.
go back to reference Li X, Nandhakumar IS, Attard GS, Markham ML, Smith DC, Baumberg JJ (2009) Micropor Mesopor Mater 118:403–407CrossRef Li X, Nandhakumar IS, Attard GS, Markham ML, Smith DC, Baumberg JJ (2009) Micropor Mesopor Mater 118:403–407CrossRef
326.
go back to reference Attard GS, Bartlett PN, Coleman NRB, Elliott JM, Owen JR, Wang JH (1997) Science 278:838–840CrossRef Attard GS, Bartlett PN, Coleman NRB, Elliott JM, Owen JR, Wang JH (1997) Science 278:838–840CrossRef
327.
go back to reference Elliott JM, Attard GS, Bartlett PN, Coleman NRB, Merckel DAS, Owen JR (1999) Chem Mater 11:3602–3609CrossRef Elliott JM, Attard GS, Bartlett PN, Coleman NRB, Merckel DAS, Owen JR (1999) Chem Mater 11:3602–3609CrossRef
328.
go back to reference Elliott JM, Birkin PR, Bartlett PN, Attard GS (1999) Langmuir 15:7411–7415CrossRef Elliott JM, Birkin PR, Bartlett PN, Attard GS (1999) Langmuir 15:7411–7415CrossRef
329.
330.
go back to reference Evans SAG, Elliott JM, Andrews LM, Bartlett PN, Doyle PJ, Denuault G (2002) Anal Chem 74:1322–1326PubMedCrossRef Evans SAG, Elliott JM, Andrews LM, Bartlett PN, Doyle PJ, Denuault G (2002) Anal Chem 74:1322–1326PubMedCrossRef
331.
go back to reference Nie M, Elliott JM (2005) J Mater Sci Technol 21:863–865 Nie M, Elliott JM (2005) J Mater Sci Technol 21:863–865
332.
333.
go back to reference Yamauchi Y, Tonegawa A, Komatsu M, Wang H, Wang L, Nemoto Y, Suzuki N, Kuroda K (2012) J Am Chem Soc 134:5100–5109PubMedCrossRef Yamauchi Y, Tonegawa A, Komatsu M, Wang H, Wang L, Nemoto Y, Suzuki N, Kuroda K (2012) J Am Chem Soc 134:5100–5109PubMedCrossRef
334.
go back to reference Chen SA, Liang YC, Lu KT, Pao CW, Lee JF, Lin TL, Chen JM (2014) Phys Chem Chem Phys 16:3939–3945PubMedCrossRef Chen SA, Liang YC, Lu KT, Pao CW, Lee JF, Lin TL, Chen JM (2014) Phys Chem Chem Phys 16:3939–3945PubMedCrossRef
335.
go back to reference Bender F, Mankelow RK, Hibbert DB, Gooding JJ (2006) Electroanal 18:1558–1563CrossRef Bender F, Mankelow RK, Hibbert DB, Gooding JJ (2006) Electroanal 18:1558–1563CrossRef
336.
go back to reference Bartlett PN, Gollas B, Guerin S, Marwan J (2002) Phys Chem Chem Phys 4:3835–3842CrossRef Bartlett PN, Gollas B, Guerin S, Marwan J (2002) Phys Chem Chem Phys 4:3835–3842CrossRef
340.
go back to reference Zhao DD, Xu MW, Zhou WJ, Zhang J, Li HL (2008) Electrochim Acta 53:2699–2705CrossRef Zhao DD, Xu MW, Zhou WJ, Zhang J, Li HL (2008) Electrochim Acta 53:2699–2705CrossRef
341.
342.
go back to reference Zhou WJ, Xu MW, Zhao DD, Xu CL, Li HL (2009) Micropor Mesopor Mater 117:55–60CrossRef Zhou WJ, Xu MW, Zhao DD, Xu CL, Li HL (2009) Micropor Mesopor Mater 117:55–60CrossRef
343.
go back to reference Yuan YF, Xia XH, Wu JB, Gui JS, Chen YB, Guo SY (2010) J Membrane Sci 364:298–303CrossRef Yuan YF, Xia XH, Wu JB, Gui JS, Chen YB, Guo SY (2010) J Membrane Sci 364:298–303CrossRef
344.
345.
go back to reference Sugimoto W, Makino S, Mukai R, Tatsumi Z, Fukuda K, Takasu Y (2012) YamauchiY. J Power Sources 204:244–248CrossRef Sugimoto W, Makino S, Mukai R, Tatsumi Z, Fukuda K, Takasu Y (2012) YamauchiY. J Power Sources 204:244–248CrossRef
346.
347.
go back to reference Dong B, Xue T, Xu CL, Li HL (2008) Micropor Mesopor Mater 112:627–631 Dong B, Xue T, Xu CL, Li HL (2008) Micropor Mesopor Mater 112:627–631
348.
go back to reference Braun PV, Osenar P, Twardowski M, Tew GN, Stupp SI (2005) Macroscopic nanotemplating of semiconductor films with hydrogen-bonded lyotropic liquid crystals. Adv Funct Mater 15 (11):1745–1750 Braun PV, Osenar P, Twardowski M, Tew GN, Stupp SI (2005) Macroscopic nanotemplating of semiconductor films with hydrogen-bonded lyotropic liquid crystals. Adv Funct Mater 15 (11):1745–1750
349.
go back to reference Markham ML, Baumberg JJ, Smith DC, Li X, Gabriel T, Attard GS, Nandhakumar I (2005) Appl Phys Lett 86:011912(1–3) Markham ML, Baumberg JJ, Smith DC, Li X, Gabriel T, Attard GS, Nandhakumar I (2005) Appl Phys Lett 86:011912(1–3)
350.
go back to reference Li X, Nandhakumar IS, Gabriel T, Attard GS, Markham ML, Smith DC, Baumberg JJ, Govender K, O’Brien P, Smyth-Boyle D (2006) J Mater Chem 16:3207–3214CrossRef Li X, Nandhakumar IS, Gabriel T, Attard GS, Markham ML, Smith DC, Baumberg JJ, Govender K, O’Brien P, Smyth-Boyle D (2006) J Mater Chem 16:3207–3214CrossRef
352.
go back to reference Huang L, Wang H, Wang Z, Mitra A, Zhao D, Yan Y (2002) Chem Mater 14:876–880CrossRef Huang L, Wang H, Wang Z, Mitra A, Zhao D, Yan Y (2002) Chem Mater 14:876–880CrossRef
353.
go back to reference Bender F, Chilcott TC, Coster HGL, Hibbert DB, Gooding JJ (2007) Electrochim Acta 52:2640–2648CrossRef Bender F, Chilcott TC, Coster HGL, Hibbert DB, Gooding JJ (2007) Electrochim Acta 52:2640–2648CrossRef
354.
356.
357.
358.
359.
362.
363.
go back to reference Zhang C, Yang H, Sun T, Shan N, Chen J, Xu L, Yan Y (2014) J Power Sources 245:579–582CrossRef Zhang C, Yang H, Sun T, Shan N, Chen J, Xu L, Yan Y (2014) J Power Sources 245:579–582CrossRef
364.
go back to reference Michaelis E, Wöhrle D, Rathousky J, Wark M (2006) Thin Solid Films 497:163–169CrossRef Michaelis E, Wöhrle D, Rathousky J, Wark M (2006) Thin Solid Films 497:163–169CrossRef
365.
go back to reference Nam HS, Jang KS, Ko JM, Kong JM, Kim JD (2011) Electrochim Acta 56:6459–6463CrossRef Nam HS, Jang KS, Ko JM, Kong JM, Kim JD (2011) Electrochim Acta 56:6459–6463CrossRef
367.
go back to reference Nasirpouri F, Barzegar S, Samardak AY, Ognev AV, Zubkov AA, Stancu A, Samardak AS (2019) Appl Surf Sci 471:776–785CrossRef Nasirpouri F, Barzegar S, Samardak AY, Ognev AV, Zubkov AA, Stancu A, Samardak AS (2019) Appl Surf Sci 471:776–785CrossRef
368.
go back to reference Iqbal M, Li C, Wood K, Jiang B, Takei T, Dag Ö, Baba D, Nugraha AS, Asahi T, Whitten AE, Hossain MSA, Malgras V, Yamauchi Y (2017) Chem Mater 29:6405–6413CrossRef Iqbal M, Li C, Wood K, Jiang B, Takei T, Dag Ö, Baba D, Nugraha AS, Asahi T, Whitten AE, Hossain MSA, Malgras V, Yamauchi Y (2017) Chem Mater 29:6405–6413CrossRef
369.
go back to reference Isarain-Chávez E, Baró MD, Alcantara C, Pané S, Sort J, Pellicer E (2018) ChemSusChem 11:367–375CrossRef Isarain-Chávez E, Baró MD, Alcantara C, Pané S, Sort J, Pellicer E (2018) ChemSusChem 11:367–375CrossRef
370.
go back to reference Li C, Dag Ö, Dao TD, Nagao T, Sakamoto Y, Kimura T, Terasaki O, Yamauchi Y (2015) Nat Commun 6:6608(1–8) Li C, Dag Ö, Dao TD, Nagao T, Sakamoto Y, Kimura T, Terasaki O, Yamauchi Y (2015) Nat Commun 6:6608(1–8)
371.
go back to reference Baba D, Kim J, Henzie J, Li C, Jiang B, Dag Ő, Yamauchi Y, Asahi T (2018) Chem Commun 54:10347–10350CrossRef Baba D, Kim J, Henzie J, Li C, Jiang B, Dag Ő, Yamauchi Y, Asahi T (2018) Chem Commun 54:10347–10350CrossRef
372.
go back to reference Li C, Jiang B, Chen H, Imura M, Sang L, Malgras V, Bando Y, Ahamad T, Alshehri SM, Tominaka S, Yamauchi Y (2016) Nano Res 9:1752–1762CrossRef Li C, Jiang B, Chen H, Imura M, Sang L, Malgras V, Bando Y, Ahamad T, Alshehri SM, Tominaka S, Yamauchi Y (2016) Nano Res 9:1752–1762CrossRef
374.
go back to reference Nugraha AS, Malgras V, Iqbal M, Jiang B, Li C, Bando Y, Alshehri A, Kim J, Yamauchi Y, Asahi T (2018) ACS Appl Mater Interfaces 10:23783–23791PubMedCrossRef Nugraha AS, Malgras V, Iqbal M, Jiang B, Li C, Bando Y, Alshehri A, Kim J, Yamauchi Y, Asahi T (2018) ACS Appl Mater Interfaces 10:23783–23791PubMedCrossRef
375.
go back to reference Park S, Lee SY, Boo H, Kim HM, Kim KB, Kim HC, Song YJ, Chung TD (2007) Chem Mater 19:3373–3375 Park S, Lee SY, Boo H, Kim HM, Kim KB, Kim HC, Song YJ, Chung TD (2007) Chem Mater 19:3373–3375
376.
go back to reference Park S, Song YJ, Boo H, Han JH, Chung TD (2009) Electrochem Commun 11:2225–2228CrossRef Park S, Song YJ, Boo H, Han JH, Chung TD (2009) Electrochem Commun 11:2225–2228CrossRef
377.
go back to reference Hu L, Yu Z, Song Y, Liu C, Han Y, Cao X, Huang R, Jiao S (2015) Electrochem 83:715–720CrossRef Hu L, Yu Z, Song Y, Liu C, Han Y, Cao X, Huang R, Jiao S (2015) Electrochem 83:715–720CrossRef
378.
go back to reference Hu L, Yu Z, Hu Z, Song Y, Zhang F, Zhu H Jiao S (2015) Electrochim Acta 174:273–281CrossRef Hu L, Yu Z, Hu Z, Song Y, Zhang F, Zhu H Jiao S (2015) Electrochim Acta 174:273–281CrossRef
379.
go back to reference Sultana S, Saha S, Islam MM, Rahman MM, Mollah MYA, Susan MABH (2013) J Electrochem Soc 160:D524–D529CrossRef Sultana S, Saha S, Islam MM, Rahman MM, Mollah MYA, Susan MABH (2013) J Electrochem Soc 160:D524–D529CrossRef
380.
go back to reference Saha S, Sultana S, Islam MM, Rahman MM, Mollah MYA, Susan MABH (2014) Ionics 20:1175–1181CrossRef Saha S, Sultana S, Islam MM, Rahman MM, Mollah MYA, Susan MABH (2014) Ionics 20:1175–1181CrossRef
381.
384.
385.
386.
go back to reference Choi SJ, Woo DH, Myung N, Kang H, Park SM (2001) J Electrochem Soc 148:C569–C573CrossRef Choi SJ, Woo DH, Myung N, Kang H, Park SM (2001) J Electrochem Soc 148:C569–C573CrossRef
387.
go back to reference Woo DH, Choi SJ, Han DH, Kang H, Park SM (2001) Phys Chem Chem Phys 3:3382–3386CrossRef Woo DH, Choi SJ, Han DH, Kang H, Park SM (2001) Phys Chem Chem Phys 3:3382–3386CrossRef
389.
go back to reference Innocenti M, Bellassai S, Bianchini C, Carlà F, Loglio F, Polonia L, Vizza F, Foresti ML (2010) Electrochim Acta 55:2550–2554 Innocenti M, Bellassai S, Bianchini C, Carlà F, Loglio F, Polonia L, Vizza F, Foresti ML (2010) Electrochim Acta 55:2550–2554
390.
go back to reference Foresti ML, Loglio F, Innocenti M, Bellassai S, Carlá F, Lastraioli E, Pezzatini G, Bianchini C, Vizza F (2010) Langmuir 26:1802–1806PubMedCrossRef Foresti ML, Loglio F, Innocenti M, Bellassai S, Carlá F, Lastraioli E, Pezzatini G, Bianchini C, Vizza F (2010) Langmuir 26:1802–1806PubMedCrossRef
Metadata
Title
Templated Systems
Author
László Péter
Copyright Year
2021
DOI
https://doi.org/10.1007/978-3-030-69117-2_11

Premium Partners