Skip to main content
Top
Published in: Polymer Bulletin 6/2024

19-08-2023 | ORIGINAL PAPER

An investigation of chemical oxidative polymerization and life cycle assessment of graphene oxide-grafted polyaniline nanocomposite for improved electrocatalytic performance

Authors: Shashank Shekhar, Reetu Sharma, Sanjeev Gautam, Amarendra Mohan Khan, Anjana Sarkar, Rahul Singh, Krishan Dutt Chauhan, Bhasha Sharma

Published in: Polymer Bulletin | Issue 6/2024

Log in

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

search-config
loading …

Abstract

With escalating apprehension contemplating anthropogenic climate change and exhaustion of fossil fuels, the development of sustainable energy storage devices has become exigent and compelling. Supercapacitors are observed as budding alternatives for the augmentation and replacement of batteries because of their skyscraping power density and long life cycle. Polyaniline (PANI), attributable to its low cost, ease of synthesis, environmental stability, electroactivity, queer doping/de-doping chemistry, and high theoretical pseudocapacitance, has emerged as sterling electrode material for supercapacitor applications. Howbeit, a hindrance to cycling life and rate-capability ascribable to the large change in volume and sluggish redox reactions during the charging–discharging process restricts its practical use. The amalgamation of PANI with graphene oxide (GO) has attracted a plethora of interest as it instigates novel properties and enhanced performance. The SEM micrographs suggested that GO nanoparticles were well dispersed in the polymer matrix. Higher thermal stability was observed for GO-PANI contrary to pure PANI which was attributable to the shielding effect from graphene substrates. The inclusion of 10% GO content revealed better conductivity. Cyclic voltammetry studies elucidated the highest current value and electrocatalytic properties were found to be diffusion controlled. Life cycle assessment studies were performed to assess the environmental performance of the prepared nanocomposites. The LCA studies highlighted the energy-intensive nature of the fabrication process and toxic nature of chemicals in use suggesting the requirement of potential alternatives when upscaling the fabrication processes for industrial-scale manufacturing.

Graphical abstract

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 Ishaq S, Moussa M, Kanwal F, Ehsan M, Saleem M, Van TN, Losic D (2019) Facile synthesis of ternary graphene nanocomposites with doped metal oxide and conductive polymers as electrode materials for high performance supercapacitors. Sci Rep 9(1):1–11 Ishaq S, Moussa M, Kanwal F, Ehsan M, Saleem M, Van TN, Losic D (2019) Facile synthesis of ternary graphene nanocomposites with doped metal oxide and conductive polymers as electrode materials for high performance supercapacitors. Sci Rep 9(1):1–11
2.
go back to reference Conti J, Holtberg P, Diefenderfer J, LaRose A, Turnure JT, Westfall L (2016) International energy outlook 2016 with projections to 2040 (No. DOE/EIA-0484 (2016)). USDOE energy information administration (EIA), Washington, DC (United States). Office of energy analysis Conti J, Holtberg P, Diefenderfer J, LaRose A, Turnure JT, Westfall L (2016) International energy outlook 2016 with projections to 2040 (No. DOE/EIA-0484 (2016)). USDOE energy information administration (EIA), Washington, DC (United States). Office of energy analysis
3.
go back to reference Shen J, Yang C, Li X, Wang G (2013) High-performance asymmetric supercapacitor based on nanoarchitectured polyaniline/graphene/carbon nanotube and activated graphene electrodes. ACS Appl Mater Interfaces 5(17):8467–8476PubMed Shen J, Yang C, Li X, Wang G (2013) High-performance asymmetric supercapacitor based on nanoarchitectured polyaniline/graphene/carbon nanotube and activated graphene electrodes. ACS Appl Mater Interfaces 5(17):8467–8476PubMed
4.
go back to reference Winter M, Brodd RJ (2005) What are batteries, fuel cells, and supercapacitors?(Chem. Rev. 2003, 104, 4245–4269. Published on the Web 09/28/2004). Chem Rev 105(3):1021–1021 Winter M, Brodd RJ (2005) What are batteries, fuel cells, and supercapacitors?(Chem. Rev. 2003, 104, 4245–4269. Published on the Web 09/28/2004). Chem Rev 105(3):1021–1021
5.
go back to reference Luo Y, Hong W, Xiao Z, Bai H (2018) A high-performance electrochemical supercapacitor based on a polyaniline/reduced graphene oxide electrode and a copper (ii) ion active electrolyte. Phys Chem Chem Phys 20(1):131–136 Luo Y, Hong W, Xiao Z, Bai H (2018) A high-performance electrochemical supercapacitor based on a polyaniline/reduced graphene oxide electrode and a copper (ii) ion active electrolyte. Phys Chem Chem Phys 20(1):131–136
6.
go back to reference Liu P, Yan J, Guang Z, Huang Y, Li X, Huang W (2019) Recent advancements of polyaniline-based nanocomposites for supercapacitors. J Power Sour 424:108–130 Liu P, Yan J, Guang Z, Huang Y, Li X, Huang W (2019) Recent advancements of polyaniline-based nanocomposites for supercapacitors. J Power Sour 424:108–130
7.
go back to reference Li D, Li Y, Feng Y, Hu W, Feng W (2015) Hierarchical graphene oxide/polyaniline nanocomposites prepared by interfacial electrochemical polymerization for flexible solid-state supercapacitors. J Mater Chem A 3(5):2135–2143 Li D, Li Y, Feng Y, Hu W, Feng W (2015) Hierarchical graphene oxide/polyaniline nanocomposites prepared by interfacial electrochemical polymerization for flexible solid-state supercapacitors. J Mater Chem A 3(5):2135–2143
8.
go back to reference Eftekhari A, Li L, Yang Y (2017) Polyaniline supercapacitors. J Power Sour 347:86–107 Eftekhari A, Li L, Yang Y (2017) Polyaniline supercapacitors. J Power Sour 347:86–107
9.
go back to reference Pal K, Panwar V, Bag S, Manuel J, Ahn JH, Kim JK (2015) Graphene oxide–polyaniline–polypyrrole nanocomposite for a supercapacitor electrode. RSC Adv 5(4):3005–3010 Pal K, Panwar V, Bag S, Manuel J, Ahn JH, Kim JK (2015) Graphene oxide–polyaniline–polypyrrole nanocomposite for a supercapacitor electrode. RSC Adv 5(4):3005–3010
10.
go back to reference Gui D, Liu C, Chen F, Liu J (2014) Preparation of polyaniline/graphene oxide nanocomposite for the application of supercapacitor. Appl Surf Sci 307:172–177 Gui D, Liu C, Chen F, Liu J (2014) Preparation of polyaniline/graphene oxide nanocomposite for the application of supercapacitor. Appl Surf Sci 307:172–177
11.
go back to reference Jain R, Mehrotra R, Mishra S (2019) Synthesis of B doped graphene/polyaniline hybrids for high-performance supercapacitor application. J Mater Sci Mater Electron 30(3):2316–2326 Jain R, Mehrotra R, Mishra S (2019) Synthesis of B doped graphene/polyaniline hybrids for high-performance supercapacitor application. J Mater Sci Mater Electron 30(3):2316–2326
12.
go back to reference Verma S, Mal DS, de Oliveira PR, Janegitz BC, Prakash J, Gupta RK (2022) A facile synthesis of novel polyaniline/graphene nanocomposite thin films for enzyme-free electrochemical sensing of hydrogen peroxide. Mol Syst Des Eng 7(2):158–170 Verma S, Mal DS, de Oliveira PR, Janegitz BC, Prakash J, Gupta RK (2022) A facile synthesis of novel polyaniline/graphene nanocomposite thin films for enzyme-free electrochemical sensing of hydrogen peroxide. Mol Syst Des Eng 7(2):158–170
13.
go back to reference Sereshti H, Karami F, Nouri N, Farahani A (2021) Electrochemically controlled solid phase microextraction based on a conductive polyaniline-graphene oxide nanocomposite for extraction of tetracyclines in milk and water. J Sci Food Agric 101(6):2304–2311PubMed Sereshti H, Karami F, Nouri N, Farahani A (2021) Electrochemically controlled solid phase microextraction based on a conductive polyaniline-graphene oxide nanocomposite for extraction of tetracyclines in milk and water. J Sci Food Agric 101(6):2304–2311PubMed
14.
go back to reference Yang X, Qiu Y, Zhang M, Zhang L, Li H (2021) Facile fabrication of polyaniline/graphene composite fibers as electrodes for fiber-shaped supercapacitors. Appl Sci 11(18):8690 Yang X, Qiu Y, Zhang M, Zhang L, Li H (2021) Facile fabrication of polyaniline/graphene composite fibers as electrodes for fiber-shaped supercapacitors. Appl Sci 11(18):8690
15.
go back to reference Loy ACM, Alhazmi H, Lock SSM, Yiin CL, Cheah KW, Chin BLF, Yusup S (2021) Life-cycle assessment of hydrogen production via catalytic gasification of wheat straw in the presence of straw derived biochar catalyst. Biores Technol 341:125796 Loy ACM, Alhazmi H, Lock SSM, Yiin CL, Cheah KW, Chin BLF, Yusup S (2021) Life-cycle assessment of hydrogen production via catalytic gasification of wheat straw in the presence of straw derived biochar catalyst. Biores Technol 341:125796
16.
go back to reference Jolliet O, Margni M, Charles R, Humbert S, Payet J, Rebitzer G, Rosenbaum R (2003) IMPACT 2002+: a new life cycle impact assessment methodology. Int J life cycle Assess 8(6):324–330 Jolliet O, Margni M, Charles R, Humbert S, Payet J, Rebitzer G, Rosenbaum R (2003) IMPACT 2002+: a new life cycle impact assessment methodology. Int J life cycle Assess 8(6):324–330
17.
go back to reference Jiang Q, Shang Y, Sun Y, Yang Y, Hou S, Zhang Y, Cao A (2019) Flexible and multi-form solid-state supercapacitors based on polyaniline/graphene oxide/CNT composite films and fibers. Diam Relat Mater 92:198–207 Jiang Q, Shang Y, Sun Y, Yang Y, Hou S, Zhang Y, Cao A (2019) Flexible and multi-form solid-state supercapacitors based on polyaniline/graphene oxide/CNT composite films and fibers. Diam Relat Mater 92:198–207
18.
go back to reference Shao D, Hou G, Li J, Wen T, Ren X, Wang X (2014) PANI/GO as a super adsorbent for the selective adsorption of uranium (VI). Chem Eng J 255:604–612 Shao D, Hou G, Li J, Wen T, Ren X, Wang X (2014) PANI/GO as a super adsorbent for the selective adsorption of uranium (VI). Chem Eng J 255:604–612
19.
go back to reference Li Y, Zhou M, Xia Z, Gong Q, Liu X, Yang Y, Gao Q (2020) Facile preparation of polyaniline covalently grafted to isocyanate functionalized reduced graphene oxide nanocomposite for high performance flexible supercapacitors. Colloids Surf A Physicochem Eng Asp 602:125172 Li Y, Zhou M, Xia Z, Gong Q, Liu X, Yang Y, Gao Q (2020) Facile preparation of polyaniline covalently grafted to isocyanate functionalized reduced graphene oxide nanocomposite for high performance flexible supercapacitors. Colloids Surf A Physicochem Eng Asp 602:125172
20.
go back to reference Abdelraheem A, El-Shazly AH, Elkady MF (2018) Characterization of atypical polyaniline nano-structures prepared via advanced techniques. Alex Eng J 57(4):3291–3297 Abdelraheem A, El-Shazly AH, Elkady MF (2018) Characterization of atypical polyaniline nano-structures prepared via advanced techniques. Alex Eng J 57(4):3291–3297
21.
go back to reference Shalini V, Navaneethan M, Harish S, Archana J, Ponnusamy S, Ikeda H, Hayakawa Y (2019) Design and fabrication of PANI/GO nanocomposite for enhanced room-temperature thermoelectric application. Appl Surf Sci 493:1350–1360 Shalini V, Navaneethan M, Harish S, Archana J, Ponnusamy S, Ikeda H, Hayakawa Y (2019) Design and fabrication of PANI/GO nanocomposite for enhanced room-temperature thermoelectric application. Appl Surf Sci 493:1350–1360
22.
go back to reference Imran SM, Kim YouNa, Shao GN, Hussain M, Choa Y-h, Kim HT (2014) Enhancement of electroconductivity of polyaniline/graphene oxide nanocomposites through in situ emulsion polymerization. J Mater Sci 49(3):1328–1335 Imran SM, Kim YouNa, Shao GN, Hussain M, Choa Y-h, Kim HT (2014) Enhancement of electroconductivity of polyaniline/graphene oxide nanocomposites through in situ emulsion polymerization. J Mater Sci 49(3):1328–1335
23.
go back to reference Sharma R, Sarkar A, Jha R, Kumar Sharma A, Sharma D (2020) Sol–gel–mediated synthesis of TiO2 nanocrystals: structural, optical, and electrochemical properties. Int J Appl Ceram Technol 17(3):1400–1409 Sharma R, Sarkar A, Jha R, Kumar Sharma A, Sharma D (2020) Sol–gel–mediated synthesis of TiO2 nanocrystals: structural, optical, and electrochemical properties. Int J Appl Ceram Technol 17(3):1400–1409
24.
go back to reference Wang Z, Han JJ, Zhang N, Sun DD, Han T (2019) Synthesis of polyaniline/graphene composite and its application in zinc-rechargeable batteries. J Solid State Electrochem 23(12):3373–3382 Wang Z, Han JJ, Zhang N, Sun DD, Han T (2019) Synthesis of polyaniline/graphene composite and its application in zinc-rechargeable batteries. J Solid State Electrochem 23(12):3373–3382
25.
go back to reference Shekhar S, Sharma R, Sharma S, Sharma B, Sarkar A, Jain P (2020) An exploration of electrocatalytic analysis and antibacterial efficacy of electrically conductive poly (D-glucosamine)/graphene oxide bionanohybrid. Carbohyd Polym 240:116242 Shekhar S, Sharma R, Sharma S, Sharma B, Sarkar A, Jain P (2020) An exploration of electrocatalytic analysis and antibacterial efficacy of electrically conductive poly (D-glucosamine)/graphene oxide bionanohybrid. Carbohyd Polym 240:116242
26.
go back to reference Song Y, Cao K, Li W, Ma C, Qiao X, Li H, Hong C (2020) Optimal film thickness of rGO/MoS2@ polyaniline nanosheets of 3D arrays for carcinoembryonic antigen high sensitivity detection. Microchem J 155:104694 Song Y, Cao K, Li W, Ma C, Qiao X, Li H, Hong C (2020) Optimal film thickness of rGO/MoS2@ polyaniline nanosheets of 3D arrays for carcinoembryonic antigen high sensitivity detection. Microchem J 155:104694
27.
go back to reference Wang L, Ye Y, Lu X, Wen Z, Li Z, Hou H, Song Y (2013) Hierarchical nanocomposites of polyaniline nanowire arrays on reduced graphene oxide sheets for supercapacitors. Sci Rep 3(1):1–9 Wang L, Ye Y, Lu X, Wen Z, Li Z, Hou H, Song Y (2013) Hierarchical nanocomposites of polyaniline nanowire arrays on reduced graphene oxide sheets for supercapacitors. Sci Rep 3(1):1–9
28.
go back to reference Xu J, Wang K, Zu SZ, Han BH, Wei Z (2010) Hierarchical nanocomposites of polyaniline nanowire arrays on graphene oxide sheets with synergistic effect for energy storage. ACS Nano 4(9):5019–5026PubMed Xu J, Wang K, Zu SZ, Han BH, Wei Z (2010) Hierarchical nanocomposites of polyaniline nanowire arrays on graphene oxide sheets with synergistic effect for energy storage. ACS Nano 4(9):5019–5026PubMed
29.
go back to reference Amrollahi S, Ramezanzadeh B, Yari H, Ramezanzadeh M, Mahdavian M (2019) Synthesis of polyaniline-modified graphene oxide for obtaining a high performance epoxy nanocomposite film with excellent UV blocking/anti-oxidant/anti-corrosion capabilities. Compos B Eng 173:106804 Amrollahi S, Ramezanzadeh B, Yari H, Ramezanzadeh M, Mahdavian M (2019) Synthesis of polyaniline-modified graphene oxide for obtaining a high performance epoxy nanocomposite film with excellent UV blocking/anti-oxidant/anti-corrosion capabilities. Compos B Eng 173:106804
30.
go back to reference Gul H, Shah AUHA, Krewer U, Bilal S (2020) Study on direct synthesis of energy efficient multifunctional polyaniline–graphene oxide nanocomposite and its application in aqueous symmetric supercapacitor devices. Nanomaterials 10(1):118PubMedPubMedCentral Gul H, Shah AUHA, Krewer U, Bilal S (2020) Study on direct synthesis of energy efficient multifunctional polyaniline–graphene oxide nanocomposite and its application in aqueous symmetric supercapacitor devices. Nanomaterials 10(1):118PubMedPubMedCentral
31.
go back to reference Purty B, Choudhary RB, Biswas A, Udayabhanu G (2018) Potentially enlarged supercapacitive values for CdS-PPY decorated rGO nanocomposites as electrode materials. Mater Chem Phys 216:213–222 Purty B, Choudhary RB, Biswas A, Udayabhanu G (2018) Potentially enlarged supercapacitive values for CdS-PPY decorated rGO nanocomposites as electrode materials. Mater Chem Phys 216:213–222
32.
go back to reference Sharma R, Jha R, Sarkar A, Sharma AK, Sharma D, Bhushan M, Bhardwaj R (2020) Controlled growth of α-MoO3 nanostructures with enhanced optical and electrochemical properties without capping agents. Ceram Int 46(14):23084–23097 Sharma R, Jha R, Sarkar A, Sharma AK, Sharma D, Bhushan M, Bhardwaj R (2020) Controlled growth of α-MoO3 nanostructures with enhanced optical and electrochemical properties without capping agents. Ceram Int 46(14):23084–23097
33.
go back to reference Wang X, Hu Y, Song L, Yang H, Xing W, Lu H (2011) In situ polymerization of graphene nanosheets and polyurethane with enhanced mechanical and thermal properties. J Mater Chem 21(12):4222–4227 Wang X, Hu Y, Song L, Yang H, Xing W, Lu H (2011) In situ polymerization of graphene nanosheets and polyurethane with enhanced mechanical and thermal properties. J Mater Chem 21(12):4222–4227
34.
go back to reference Jain R, Sinha A (2016) Polyaniline–graphene oxide nanocomposite sensor for quantification of calcium channel blocker levamlodipine. Mater Sci Eng C 65:205–214 Jain R, Sinha A (2016) Polyaniline–graphene oxide nanocomposite sensor for quantification of calcium channel blocker levamlodipine. Mater Sci Eng C 65:205–214
35.
go back to reference Balakrishna Pillai P, Kumar A, Song X, De Souza MM (2018) Diffusion-controlled faradaic charge storage in high-performance solid electrolyte-gated zinc oxide thin-film transistors. ACS Appl Mater Interfaces 10(11):9782–9791PubMed Balakrishna Pillai P, Kumar A, Song X, De Souza MM (2018) Diffusion-controlled faradaic charge storage in high-performance solid electrolyte-gated zinc oxide thin-film transistors. ACS Appl Mater Interfaces 10(11):9782–9791PubMed
36.
go back to reference Asen P, Shahrokhian S, Zad AI (2018) Transition metal ions-doped polyaniline/graphene oxide nanostructure as high performance electrode for supercapacitor applications. J Solid State Electrochem 22(4):983–996 Asen P, Shahrokhian S, Zad AI (2018) Transition metal ions-doped polyaniline/graphene oxide nanostructure as high performance electrode for supercapacitor applications. J Solid State Electrochem 22(4):983–996
37.
go back to reference Serrano-Luján L, Víctor-Román S, Toledo C, Sanahuja-Parejo O, Mansour AE, Abad J, Urbina A (2019) Environmental impact of the production of graphene oxide and reduced graphene oxide. SN Appl Sci 1(2):179 Serrano-Luján L, Víctor-Román S, Toledo C, Sanahuja-Parejo O, Mansour AE, Abad J, Urbina A (2019) Environmental impact of the production of graphene oxide and reduced graphene oxide. SN Appl Sci 1(2):179
38.
go back to reference Prabhu R, Jeevananda T, Reddy KR, Raghu AV (2021) Polyaniline-fly ash nanocomposites synthesized via emulsion polymerization: physicochemical, thermal and dielectric properties. Mater Sci Energy Technol 4:107–112 Prabhu R, Jeevananda T, Reddy KR, Raghu AV (2021) Polyaniline-fly ash nanocomposites synthesized via emulsion polymerization: physicochemical, thermal and dielectric properties. Mater Sci Energy Technol 4:107–112
39.
go back to reference Prabhu R, Roopashree B, Jeevananda T, Rao S, Reddy KR, Raghu AV (2021) Synthesis and corrosion resistance properties of novel conjugated polymer-Cu2Cl4L3 composites. Mater Sci Energy Technol 4:92–99 Prabhu R, Roopashree B, Jeevananda T, Rao S, Reddy KR, Raghu AV (2021) Synthesis and corrosion resistance properties of novel conjugated polymer-Cu2Cl4L3 composites. Mater Sci Energy Technol 4:92–99
40.
go back to reference Reddy KR, Karthik KV, Prasad SB, Soni SK, Jeong HM, Raghu AV (2016) Enhanced photocatalytic activity of nanostructured titanium dioxide/polyaniline hybrid photocatalysts. Polyhedron 120:169–174 Reddy KR, Karthik KV, Prasad SB, Soni SK, Jeong HM, Raghu AV (2016) Enhanced photocatalytic activity of nanostructured titanium dioxide/polyaniline hybrid photocatalysts. Polyhedron 120:169–174
41.
go back to reference Raghu AV, Jeong HM, Kim JH, Lee YR, Cho YB, Sirsalmath K (2008) Synthesis and characterization of novel polyurethanes based on 4-{(4-hydroxyphenyl) iminomethyl} phenol. Macromol Res 16(3):194–199 Raghu AV, Jeong HM, Kim JH, Lee YR, Cho YB, Sirsalmath K (2008) Synthesis and characterization of novel polyurethanes based on 4-{(4-hydroxyphenyl) iminomethyl} phenol. Macromol Res 16(3):194–199
42.
go back to reference Kim KT, Dao TD, Jeong HM, Anjanapura RV, Aminabhavi TM (2015) Graphene coated with alumina and its utilization as a thermal conductivity enhancer for alumina sphere/thermoplastic polyurethane composite. Mater Chem Phys 153:291–300 Kim KT, Dao TD, Jeong HM, Anjanapura RV, Aminabhavi TM (2015) Graphene coated with alumina and its utilization as a thermal conductivity enhancer for alumina sphere/thermoplastic polyurethane composite. Mater Chem Phys 153:291–300
43.
go back to reference Nguyen DA, Raghu AV, Choi JT, Jeong HM (2010) Properties of thermoplastic polyurethane/functionalised graphene sheet nanocomposites prepared by the in situ polymerisation method. Polym Polym Compos 18(7):351–358 Nguyen DA, Raghu AV, Choi JT, Jeong HM (2010) Properties of thermoplastic polyurethane/functionalised graphene sheet nanocomposites prepared by the in situ polymerisation method. Polym Polym Compos 18(7):351–358
Metadata
Title
An investigation of chemical oxidative polymerization and life cycle assessment of graphene oxide-grafted polyaniline nanocomposite for improved electrocatalytic performance
Authors
Shashank Shekhar
Reetu Sharma
Sanjeev Gautam
Amarendra Mohan Khan
Anjana Sarkar
Rahul Singh
Krishan Dutt Chauhan
Bhasha Sharma
Publication date
19-08-2023
Publisher
Springer Berlin Heidelberg
Published in
Polymer Bulletin / Issue 6/2024
Print ISSN: 0170-0839
Electronic ISSN: 1436-2449
DOI
https://doi.org/10.1007/s00289-023-04947-7

Other articles of this Issue 6/2024

Polymer Bulletin 6/2024 Go to the issue

Premium Partners