Skip to main content
Erschienen in: Journal of Sol-Gel Science and Technology 3/2018

30.01.2018 | Original Paper: Industrial and technological applications of sol-gel and hybrid materials

Hybrid sol–gel coatings based on GPTMS/TEOS containing colloidal SiO2 and cerium nitrate for increasing corrosion protection of aluminium alloy 7075-T6

verfasst von: Urša Tiringer, Ingrid Milošev, Alicia Durán, Yolanda Castro

Erschienen in: Journal of Sol-Gel Science and Technology | Ausgabe 3/2018

Einloggen

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

One of the promising candidates to replace the chromate conversion coatings for corrosion protection of aluminium alloy AA7075 are the hybrid sol–gel coatings. In the present work hybrid silica sol–gel coatings doped with cerium nitrate were prepared and characterized. Tetraethoxysilane (TEOS) and 3-glycidoxypropyl-trimethoxysilane (GPTMS) were used as precursors. Silica SiO2 (Ludox) particles were added to achieve a barrier properties of coating, while Ce(NO3)3·6H2O was added in order to obtain an active corrosion protection. Optimization of sol synthesis was based on the results of ATR-FTIR spectroscopy and UV–vis–NIR spectroscopy. Opening of epoxy rings and completion of hydrolysis and the condensation reactions during the synthesis process were confirmed. Coatings were characterized through thickness, water contact angle, roughness, adhesion, electrochemical properties (potentiodynamic and electrochemical impedance spectroscopy) and the response to prolonged immersion time in 0.1 M NaCl. The high degree of cross-linking of Si–O–Si network structure and high density was achieved during the synthesis of the sol. Moreover, the results showed that the curing process and the incorporation of cerium nitrate into the hybrid sol–gel coating affected to the corrosion properties of the coating. The observed enhancement in corrosion protection properties is attributed to the combination of the barrier properties of the silica matrix with the active protection of the cerium nitrate.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

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!

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!

Literatur
1.
Zurück zum Zitat Vargel C (2004) Corrosion of aluminum. 1st edn. Elsevier, Amsterdam, The Netherlands Vargel C (2004) Corrosion of aluminum. 1st edn. Elsevier, Amsterdam, The Netherlands
2.
Zurück zum Zitat Davis JR (1999) Corrosion of aluminum and aluminum alloys. ASM International, Novelty, OHIO, USA Davis JR (1999) Corrosion of aluminum and aluminum alloys. ASM International, Novelty, OHIO, USA
3.
Zurück zum Zitat Buchheit RG (1995) A compilation of corrosion potentials reported for intermetallic phases in aluminum alloys. J Electrochem Soc 142:3994–3996CrossRef Buchheit RG (1995) A compilation of corrosion potentials reported for intermetallic phases in aluminum alloys. J Electrochem Soc 142:3994–3996CrossRef
4.
Zurück zum Zitat Milošev I, Rodič P (2016) Cerium chloride and acetate salts as corrosion inhibitors for aluminum alloy AA7075-T6 in sodium chloride solution. Corrosion 72:1021–1034 Milošev I, Rodič P (2016) Cerium chloride and acetate salts as corrosion inhibitors for aluminum alloy AA7075-T6 in sodium chloride solution. Corrosion 72:1021–1034
5.
Zurück zum Zitat Birbilis N, Buchheit RG (2008) Investigation and discussion of characteristics for intermetallic phases common to aAluminum alloys as a function of solution pH. J Electrochem Soc 155:C117–C126CrossRef Birbilis N, Buchheit RG (2008) Investigation and discussion of characteristics for intermetallic phases common to aAluminum alloys as a function of solution pH. J Electrochem Soc 155:C117–C126CrossRef
6.
Zurück zum Zitat Kufman G (2000) Introduction to aluminum alloys and tempers. 1st edn. ASM International, USA Kufman G (2000) Introduction to aluminum alloys and tempers. 1st edn. ASM International, USA
7.
Zurück zum Zitat Kendig MW, Buchheit RG (2003) Corrosion inhibition of aluminum and aluminum alloys by soluble chromates, chromate coatings, and chromate-free coatings. Corrosion 59:379–400CrossRef Kendig MW, Buchheit RG (2003) Corrosion inhibition of aluminum and aluminum alloys by soluble chromates, chromate coatings, and chromate-free coatings. Corrosion 59:379–400CrossRef
8.
Zurück zum Zitat Bibber JW (2001) An overview of nonhexavalent chromium conversion coatings—Part I: aluminum and its alloys. Met Finish 99:15–22CrossRef Bibber JW (2001) An overview of nonhexavalent chromium conversion coatings—Part I: aluminum and its alloys. Met Finish 99:15–22CrossRef
9.
Zurück zum Zitat Chou TP, Chandrasekaran C, Cao GZ (2003) Sol-gel-derived hybrid coatings for corrosion protection. J Sol-Gel Sci Technol 26:321–327CrossRef Chou TP, Chandrasekaran C, Cao GZ (2003) Sol-gel-derived hybrid coatings for corrosion protection. J Sol-Gel Sci Technol 26:321–327CrossRef
10.
Zurück zum Zitat Figueira RB, Silva CJR, Pereira EV (2014) Organic–inorganic hybrid sol–gel coatings for metal corrosion protection: a review of recent progress. J Coat Technol Res 12:1–35CrossRef Figueira RB, Silva CJR, Pereira EV (2014) Organic–inorganic hybrid sol–gel coatings for metal corrosion protection: a review of recent progress. J Coat Technol Res 12:1–35CrossRef
11.
Zurück zum Zitat Rodič P, Iskra J, Milošev I (2014) A hybrid organic–inorganic sol–gel coating for protecting aluminium alloy 7075-T6 against corrosion in Harrison’s solution. J Sol-Gel Sci Technol 70:90–103CrossRef Rodič P, Iskra J, Milošev I (2014) A hybrid organic–inorganic sol–gel coating for protecting aluminium alloy 7075-T6 against corrosion in Harrison’s solution. J Sol-Gel Sci Technol 70:90–103CrossRef
12.
Zurück zum Zitat Twite RL, Bierwagen GP (1998) Review of alternatives to chromate for corrosion protection of aluminum aerospace alloys. Prog Org Coat 33:91–100CrossRef Twite RL, Bierwagen GP (1998) Review of alternatives to chromate for corrosion protection of aluminum aerospace alloys. Prog Org Coat 33:91–100CrossRef
13.
Zurück zum Zitat Zheng S, Li J (2010) Inorganic–organic sol gel hybrid coatings for corrosion protection of metals. J Sol-Gel Sci Technol 54:174–187CrossRef Zheng S, Li J (2010) Inorganic–organic sol gel hybrid coatings for corrosion protection of metals. J Sol-Gel Sci Technol 54:174–187CrossRef
14.
Zurück zum Zitat Wen J, Wilkes GL (1996) Organic/Inorganic hybrid network materials by the sol−gel approach. Chem Mater 8:1667–1681CrossRef Wen J, Wilkes GL (1996) Organic/Inorganic hybrid network materials by the sol−gel approach. Chem Mater 8:1667–1681CrossRef
15.
Zurück zum Zitat Wang H, Akid R (2008) Encapsulated cerium nitrate inhibitors to provide high-performance anti-corrosion sol–gel coatings on mild steel. Corros Sci 50:1142–1148CrossRef Wang H, Akid R (2008) Encapsulated cerium nitrate inhibitors to provide high-performance anti-corrosion sol–gel coatings on mild steel. Corros Sci 50:1142–1148CrossRef
16.
Zurück zum Zitat Brinker CJ, Hurd CJ, Schunk PR, Frye GC, Ashley CS (1992) Review of sol-gel thin film formation. J Non-Cryst Solids 147:424–436CrossRef Brinker CJ, Hurd CJ, Schunk PR, Frye GC, Ashley CS (1992) Review of sol-gel thin film formation. J Non-Cryst Solids 147:424–436CrossRef
17.
Zurück zum Zitat Metroke TL, Parkhill RL, Knobbe ET (2001) Passivation of metal alloys using sol–gel-derived materials—a review. Prog Org Coat 41:233–238CrossRef Metroke TL, Parkhill RL, Knobbe ET (2001) Passivation of metal alloys using sol–gel-derived materials—a review. Prog Org Coat 41:233–238CrossRef
18.
Zurück zum Zitat Livage J, Ganguli D (2001) Sol–gel electrochromic coatings and devices: a review. Sol Energy Mater Sol Cells 68:365–381CrossRef Livage J, Ganguli D (2001) Sol–gel electrochromic coatings and devices: a review. Sol Energy Mater Sol Cells 68:365–381CrossRef
19.
Zurück zum Zitat Brinker CJ, Scherer GW (2013) Sol-Gel science: the physics and chemistry of sol-gel processing. Academic Press, Cambridge, Massachusetts, USA Brinker CJ, Scherer GW (2013) Sol-Gel science: the physics and chemistry of sol-gel processing. Academic Press, Cambridge, Massachusetts, USA
20.
Zurück zum Zitat Guglielmi M (1997) Sol-gel coatings on metals. J Sol-Gel Sci Technol 8:443–449 Guglielmi M (1997) Sol-gel coatings on metals. J Sol-Gel Sci Technol 8:443–449
21.
Zurück zum Zitat Han Y-H, Taylor A, Mantle MD, Knowles KM (2007) Sol–gel-derived organic–inorganic hybrid materials. J Non-Cryst Solids 353:313–320CrossRef Han Y-H, Taylor A, Mantle MD, Knowles KM (2007) Sol–gel-derived organic–inorganic hybrid materials. J Non-Cryst Solids 353:313–320CrossRef
22.
Zurück zum Zitat Mosa J, Durán A, Aparicio M (2009) Proton conducting sol–gel sulfonated membranes produced from 2-allylphenol, 3-glycidoxypropyl trimethoxysilane and tetraethyl orthosilicate. J Power Sources 192:138–143CrossRef Mosa J, Durán A, Aparicio M (2009) Proton conducting sol–gel sulfonated membranes produced from 2-allylphenol, 3-glycidoxypropyl trimethoxysilane and tetraethyl orthosilicate. J Power Sources 192:138–143CrossRef
23.
Zurück zum Zitat Voevodin NN, Kurdziel JW, Mantz R (2006) Corrosion protection for aerospace aluminum alloys by modified self-assembled nanophase particle (MSNAP) sol–gel. Surf Coat Technol 201:1080–1084CrossRef Voevodin NN, Kurdziel JW, Mantz R (2006) Corrosion protection for aerospace aluminum alloys by modified self-assembled nanophase particle (MSNAP) sol–gel. Surf Coat Technol 201:1080–1084CrossRef
24.
Zurück zum Zitat Pirhady Tavandashti N, Sanjabi S, Shahrabi T (2011) Evolution of corrosion protection performance of hybrid silica based sol–gel nanocoatings by doping inorganic inhibitor. Mater Corros 62:411–415CrossRef Pirhady Tavandashti N, Sanjabi S, Shahrabi T (2011) Evolution of corrosion protection performance of hybrid silica based sol–gel nanocoatings by doping inorganic inhibitor. Mater Corros 62:411–415CrossRef
25.
Zurück zum Zitat Schottner G (2001) Hybrid sol−gel-derived polymers: applications of multifunctional materials. Chem Mater 13:3422–3435CrossRef Schottner G (2001) Hybrid sol−gel-derived polymers: applications of multifunctional materials. Chem Mater 13:3422–3435CrossRef
26.
Zurück zum Zitat Zheludkevich ML, Salvado IM, Ferreira MGS (2005) Sol–gel coatings for corrosion protection of metals. J Mater Chem 15:5099–5111CrossRef Zheludkevich ML, Salvado IM, Ferreira MGS (2005) Sol–gel coatings for corrosion protection of metals. J Mater Chem 15:5099–5111CrossRef
27.
Zurück zum Zitat Rosero-Navarro NC, Curioni M, Castro Y, Aparicio M, Thompson GE, Durán A (2011) Glass-like CexOy sol–gel coatings for corrosion protection of aluminium and magnesium alloys. Surf Coat Technol 206:257–264CrossRef Rosero-Navarro NC, Curioni M, Castro Y, Aparicio M, Thompson GE, Durán A (2011) Glass-like CexOy sol–gel coatings for corrosion protection of aluminium and magnesium alloys. Surf Coat Technol 206:257–264CrossRef
28.
Zurück zum Zitat Zomorodian A, Brusciotti F, Fernandes A, Carmezim MJ, Moura e Silva T, JCS Fernandes, Montemor MF (2012) Anti-corrosion performance of a new silane coating for corrosion protection of AZ31 magnesium alloy in Hank’s solution. Surf Coat Technol 206:4368–4375CrossRef Zomorodian A, Brusciotti F, Fernandes A, Carmezim MJ, Moura e Silva T, JCS Fernandes, Montemor MF (2012) Anti-corrosion performance of a new silane coating for corrosion protection of AZ31 magnesium alloy in Hank’s solution. Surf Coat Technol 206:4368–4375CrossRef
29.
Zurück zum Zitat Underhill PR, Goring G, DuQuesnay DL (1998) The drying of 3-glycidoxypropyltrimethoxy silane. Appl Surf Sci 134:247–253CrossRef Underhill PR, Goring G, DuQuesnay DL (1998) The drying of 3-glycidoxypropyltrimethoxy silane. Appl Surf Sci 134:247–253CrossRef
30.
Zurück zum Zitat Davis SR, Brough AR, Atkinson A (2003) Formation of silica/epoxy hybrid network polymers. J Non-Cryst Solids 315:197–205CrossRef Davis SR, Brough AR, Atkinson A (2003) Formation of silica/epoxy hybrid network polymers. J Non-Cryst Solids 315:197–205CrossRef
31.
Zurück zum Zitat Lakshmi RV, Yoganandan G, Mohan AVN, Basu BJ (2014) Effect of surface pre-treatment by silanization on corrosion protection of AA2024-T3 alloy by sol–gel nanocomposite coatings. Surf Coat Technol 240:353–360CrossRef Lakshmi RV, Yoganandan G, Mohan AVN, Basu BJ (2014) Effect of surface pre-treatment by silanization on corrosion protection of AA2024-T3 alloy by sol–gel nanocomposite coatings. Surf Coat Technol 240:353–360CrossRef
32.
Zurück zum Zitat Wang H, Akid R (2007) A room temperature cured sol–gel anticorrosion pre-treatment for Al 2024-T3 alloys. Corros Sci 49:4491–4503CrossRef Wang H, Akid R (2007) A room temperature cured sol–gel anticorrosion pre-treatment for Al 2024-T3 alloys. Corros Sci 49:4491–4503CrossRef
33.
Zurück zum Zitat Zheludkevich ML, Serra R, Montemor MF, Miranda Salvado IM, Ferreira MGS (2006) Corrosion protective properties of nanostructured sol–gel hybrid coatings to AA2024-T3. Surf Coat Technol 200:3084–3094CrossRef Zheludkevich ML, Serra R, Montemor MF, Miranda Salvado IM, Ferreira MGS (2006) Corrosion protective properties of nanostructured sol–gel hybrid coatings to AA2024-T3. Surf Coat Technol 200:3084–3094CrossRef
34.
Zurück zum Zitat Zheludkevich ML, Serra R, Montemor MF, Yasakau KA, Miranda Salvado IM, Ferreira MGS (2005) Nanostructured sol–gel coatings doped with cerium nitrate as pre-treatments for AA2024-T3: corrosion protection performance. Electrochim Acta 51:208–217CrossRef Zheludkevich ML, Serra R, Montemor MF, Yasakau KA, Miranda Salvado IM, Ferreira MGS (2005) Nanostructured sol–gel coatings doped with cerium nitrate as pre-treatments for AA2024-T3: corrosion protection performance. Electrochim Acta 51:208–217CrossRef
35.
Zurück zum Zitat Roussi E, Tsetsekou A, Tsiourvas D, Karantonis A (2011) Novel hybrid organo-silicate corrosion resistant coatings based on hyperbranched polymers. Surf Coat Technol 205:3235–3244CrossRef Roussi E, Tsetsekou A, Tsiourvas D, Karantonis A (2011) Novel hybrid organo-silicate corrosion resistant coatings based on hyperbranched polymers. Surf Coat Technol 205:3235–3244CrossRef
36.
Zurück zum Zitat Schem M, Schmidt T, Gerwann J, Wittmar M, Veith M, Thompson GE, Molchan IS, Hashimoto T, Skeldon P, Phani AR, Santucci S, Zheludkevich ML (2009) CeO2-filled sol–gel coatings for corrosion protection of AA2024-T3 aluminium alloy. Corros Sci 51:2304–2315CrossRef Schem M, Schmidt T, Gerwann J, Wittmar M, Veith M, Thompson GE, Molchan IS, Hashimoto T, Skeldon P, Phani AR, Santucci S, Zheludkevich ML (2009) CeO2-filled sol–gel coatings for corrosion protection of AA2024-T3 aluminium alloy. Corros Sci 51:2304–2315CrossRef
37.
Zurück zum Zitat Wang H, Akid R, Gobara M (2010) Scratch-resistant anticorrosion sol–gel coating for the protection of AZ31 magnesium alloy via a low temperature sol–gel route. Corros Sci 52:2565–2570CrossRef Wang H, Akid R, Gobara M (2010) Scratch-resistant anticorrosion sol–gel coating for the protection of AZ31 magnesium alloy via a low temperature sol–gel route. Corros Sci 52:2565–2570CrossRef
38.
Zurück zum Zitat Khramov AN, Balbyshev VN, Voevodin NN, Donley MS (2003) Nanostructured sol–gel derived conversion coatings based on epoxy- and amino-silanes. Prog Org Coat 47:207–213CrossRef Khramov AN, Balbyshev VN, Voevodin NN, Donley MS (2003) Nanostructured sol–gel derived conversion coatings based on epoxy- and amino-silanes. Prog Org Coat 47:207–213CrossRef
39.
Zurück zum Zitat Milošev I, Kapun B, Rodič P, Iskra J (2015) Hybrid sol–gel coating agents based on zirconium(IV) propoxide and epoxysilane. J Sol-Gel Sci Technol 74:447–459CrossRef Milošev I, Kapun B, Rodič P, Iskra J (2015) Hybrid sol–gel coating agents based on zirconium(IV) propoxide and epoxysilane. J Sol-Gel Sci Technol 74:447–459CrossRef
40.
Zurück zum Zitat Zandi-zand R, Ershad-langroudi A, Rahimi A (2005) Silica based organic–inorganic hybrid nanocomposite coatings for corrosion protection. Prog Org Coat 53:286–291CrossRef Zandi-zand R, Ershad-langroudi A, Rahimi A (2005) Silica based organic–inorganic hybrid nanocomposite coatings for corrosion protection. Prog Org Coat 53:286–291CrossRef
41.
Zurück zum Zitat Sakka S (2005) Handbook of sol-gel science and technology. 2. Characterization and properties of sol-gel materials and products. Springer Science & Business Media Sakka S (2005) Handbook of sol-gel science and technology. 2. Characterization and properties of sol-gel materials and products. Springer Science & Business Media
42.
Zurück zum Zitat Innocenzi P, Brusatin G, Babonneau F (2000) Competitive polymerization between organic and Inorganic networks in hybrid materials. Chem Mater 12:3726–3732CrossRef Innocenzi P, Brusatin G, Babonneau F (2000) Competitive polymerization between organic and Inorganic networks in hybrid materials. Chem Mater 12:3726–3732CrossRef
43.
Zurück zum Zitat Metroke TL, Kachurina O, Knobbe ET (2002) Spectroscopic and corrosion resistance characterization of GLYMO–TEOS Ormosil coatings for aluminum alloy corrosion inhibition. Prog Org Coat 44:295–305CrossRef Metroke TL, Kachurina O, Knobbe ET (2002) Spectroscopic and corrosion resistance characterization of GLYMO–TEOS Ormosil coatings for aluminum alloy corrosion inhibition. Prog Org Coat 44:295–305CrossRef
44.
Zurück zum Zitat Santana I, Pepe A, Jimenez-Pique E, Pellice S, Milošev I, Ceré S (2015) Corrosion protection of carbon steel by silica-based hybrid coatings containing cerium salts: effect of silica nanoparticle content. Surf Coat Technol 265:106–116CrossRef Santana I, Pepe A, Jimenez-Pique E, Pellice S, Milošev I, Ceré S (2015) Corrosion protection of carbon steel by silica-based hybrid coatings containing cerium salts: effect of silica nanoparticle content. Surf Coat Technol 265:106–116CrossRef
45.
Zurück zum Zitat Ballarre J, Manjubala I, H Schreiner W, Orellano JC, Fratzl P, Ceré S (2010) Improving the osteointegration and bone-implant interface by incorporation of bioactive particles in sol-gel coatings of stainless steel implants. Acta Biomater 6:1601–1609CrossRef Ballarre J, Manjubala I, H Schreiner W, Orellano JC, Fratzl P, Ceré S (2010) Improving the osteointegration and bone-implant interface by incorporation of bioactive particles in sol-gel coatings of stainless steel implants. Acta Biomater 6:1601–1609CrossRef
46.
Zurück zum Zitat Vreugdenhil AJ, Balbyshev VN, Donley MS (2001) Nanostructured silicon sol-gel surface treatments for Al 2024-T3 protection. J Coat Technol 73:35–43. Vreugdenhil AJ, Balbyshev VN, Donley MS (2001) Nanostructured silicon sol-gel surface treatments for Al 2024-T3 protection. J Coat Technol 73:35–43.
47.
Zurück zum Zitat Peres RN, Cardoso ESF, Montemor MF, Melo HG, Benedetti AV, Suegama PH (2016) Influence of the addition of SiO2 nanoparticles to a hybrid coating applied on an AZ31 alloy for early corrosion protection. Surf Coat Technol 303(Part B):372–384CrossRef Peres RN, Cardoso ESF, Montemor MF, Melo HG, Benedetti AV, Suegama PH (2016) Influence of the addition of SiO2 nanoparticles to a hybrid coating applied on an AZ31 alloy for early corrosion protection. Surf Coat Technol 303(Part B):372–384CrossRef
48.
Zurück zum Zitat Durán A, Castro Y, Aparicio M, Conde A, Damborenea JJ (2007) Protection and surface modification of metals with sol–gel coatings. Int Mater Rev 52:175–192CrossRef Durán A, Castro Y, Aparicio M, Conde A, Damborenea JJ (2007) Protection and surface modification of metals with sol–gel coatings. Int Mater Rev 52:175–192CrossRef
49.
Zurück zum Zitat Voevodin NN, Grebasch NT, Soto WS, Kasten LS, Grant JT, Arnold FE, Donley MS (2001) An organically modified zirconate film as a corrosion-resistant treatment for aluminum 2024-T3. Prog Org Coat 41:287–293CrossRef Voevodin NN, Grebasch NT, Soto WS, Kasten LS, Grant JT, Arnold FE, Donley MS (2001) An organically modified zirconate film as a corrosion-resistant treatment for aluminum 2024-T3. Prog Org Coat 41:287–293CrossRef
50.
Zurück zum Zitat Rosero-Navarro NC, Pellice SA, Castro Y, Aparicio M, Durán A (2009) Improved corrosion resistance of AA2024 alloys through hybrid organic–inorganic sol–gel coatings produced from sols with controlled polymerisation. Surf Coat Technol 203:1897–1903CrossRef Rosero-Navarro NC, Pellice SA, Castro Y, Aparicio M, Durán A (2009) Improved corrosion resistance of AA2024 alloys through hybrid organic–inorganic sol–gel coatings produced from sols with controlled polymerisation. Surf Coat Technol 203:1897–1903CrossRef
51.
Zurück zum Zitat Khelifa F, Druart M-E, Habibi Y, Bénard F, Leclère P, Olivier M, Dubois P (2013) Sol–gel incorporation of silica nanofillers for tuning the anti-corrosion protection of acrylate-based coatings. Prog Org Coat 76:900–911CrossRef Khelifa F, Druart M-E, Habibi Y, Bénard F, Leclère P, Olivier M, Dubois P (2013) Sol–gel incorporation of silica nanofillers for tuning the anti-corrosion protection of acrylate-based coatings. Prog Org Coat 76:900–911CrossRef
52.
Zurück zum Zitat Suegama PH, de Melo HG, Recco AAC, Tschiptschin AP, Aoki IV (2008) Corrosion behavior of carbon steel protected with single and bi-layer of silane films filled with silica nanoparticles. Surf Coat Technol 202:2850–2858CrossRef Suegama PH, de Melo HG, Recco AAC, Tschiptschin AP, Aoki IV (2008) Corrosion behavior of carbon steel protected with single and bi-layer of silane films filled with silica nanoparticles. Surf Coat Technol 202:2850–2858CrossRef
53.
Zurück zum Zitat Suegama PH, Recco AAC, Tschiptschin AP, Aoki IV (2007) Influence of silica nanoparticles added to an organosilane film on carbon steel electrochemical and tribological behaviour. Prog Org Coat 60:90–98CrossRef Suegama PH, Recco AAC, Tschiptschin AP, Aoki IV (2007) Influence of silica nanoparticles added to an organosilane film on carbon steel electrochemical and tribological behaviour. Prog Org Coat 60:90–98CrossRef
54.
Zurück zum Zitat Iribarren-Mateos JI, Buj-Corral I, Vivancos-Calvet J, Alemán C, Iribarren JI, Armelin E (2015) Silane and epoxy coatings: a bilayer system to protect AA2024 alloy. Prog Org Coat 81:47–57CrossRef Iribarren-Mateos JI, Buj-Corral I, Vivancos-Calvet J, Alemán C, Iribarren JI, Armelin E (2015) Silane and epoxy coatings: a bilayer system to protect AA2024 alloy. Prog Org Coat 81:47–57CrossRef
55.
Zurück zum Zitat Hinton BRW (1992) Corrosion inhibition with rare earth metal salts. J Alloy Compd 180:15–25CrossRef Hinton BRW (1992) Corrosion inhibition with rare earth metal salts. J Alloy Compd 180:15–25CrossRef
56.
Zurück zum Zitat Hinton BRW, Arnott DR, Ryan NE (1984) Inhibition of aluminum alloy corrosion by cerous cations. ResearchGate 7:211–217 Hinton BRW, Arnott DR, Ryan NE (1984) Inhibition of aluminum alloy corrosion by cerous cations. ResearchGate 7:211–217
57.
Zurück zum Zitat Revie RW, Uhlig HH (2008) Corrosion and corrosion control. Wiley, Hoboken, NJCrossRef Revie RW, Uhlig HH (2008) Corrosion and corrosion control. Wiley, Hoboken, NJCrossRef
58.
Zurück zum Zitat Zhong X, Li Q, Hu J, Yang X, Luo F, Dai Y (2010) Effect of cerium concentration on microstructure, morphology and corrosion resistance of cerium–silica hybrid coatings on magnesium alloy AZ91D. Prog Org Coat 69:52–56CrossRef Zhong X, Li Q, Hu J, Yang X, Luo F, Dai Y (2010) Effect of cerium concentration on microstructure, morphology and corrosion resistance of cerium–silica hybrid coatings on magnesium alloy AZ91D. Prog Org Coat 69:52–56CrossRef
59.
Zurück zum Zitat Rahimi H, Mozaffarinia R, Hojjati Najafabadi A (2013) Corrosion and wear resistance characterization of environmentally friendly sol–gel hybrid nanocomposite coating on AA5083. J Mater Sci Technol 29:603–608CrossRef Rahimi H, Mozaffarinia R, Hojjati Najafabadi A (2013) Corrosion and wear resistance characterization of environmentally friendly sol–gel hybrid nanocomposite coating on AA5083. J Mater Sci Technol 29:603–608CrossRef
60.
Zurück zum Zitat Balgude D, Konge K, Sabnis A (2013) Synthesis and characterization of sol–gel derived CNSL based hybrid anti-corrosive coatings. J Sol-Gel Sci Technol 69:155–165CrossRef Balgude D, Konge K, Sabnis A (2013) Synthesis and characterization of sol–gel derived CNSL based hybrid anti-corrosive coatings. J Sol-Gel Sci Technol 69:155–165CrossRef
61.
Zurück zum Zitat Scopel WL, Fantini MCA, Alayo MI, Pereyra I (2002) Local order structure of a-SiOxNy:H grown by PECVD. Braz J Phys 32:366–368CrossRef Scopel WL, Fantini MCA, Alayo MI, Pereyra I (2002) Local order structure of a-SiOxNy:H grown by PECVD. Braz J Phys 32:366–368CrossRef
62.
Zurück zum Zitat Mosa J, Durán A, Aparicio M (2010) Epoxy-polystyrene-silica sol–gel membranes with high proton conductivity by combination of sulfonation and tungstophosphoric acid doping. J Membr Sci 361:135–142CrossRef Mosa J, Durán A, Aparicio M (2010) Epoxy-polystyrene-silica sol–gel membranes with high proton conductivity by combination of sulfonation and tungstophosphoric acid doping. J Membr Sci 361:135–142CrossRef
63.
Zurück zum Zitat Crivello JV, Liu S (2000) Photoinitiated cationic polymerization of epoxy alcohol monomers. J Polym Sci Part Polym Chem 38:389–401CrossRef Crivello JV, Liu S (2000) Photoinitiated cationic polymerization of epoxy alcohol monomers. J Polym Sci Part Polym Chem 38:389–401CrossRef
64.
Zurück zum Zitat Cambon J-B, Esteban J, Ansart F, Bonino J-P, Turq V, Santagneli SH, Santilli CV, Pulcinelli SH (2012) Effect of cerium on structure modifications of a hybrid sol–gel coating, its mechanical properties and anti-corrosion behavior. Mater Res Bull 47:3170–3176CrossRef Cambon J-B, Esteban J, Ansart F, Bonino J-P, Turq V, Santagneli SH, Santilli CV, Pulcinelli SH (2012) Effect of cerium on structure modifications of a hybrid sol–gel coating, its mechanical properties and anti-corrosion behavior. Mater Res Bull 47:3170–3176CrossRef
65.
Zurück zum Zitat Castro Y, Ferrari B, Moreno R, Durán A (2004) Coatings produced by electrophoretic deposition from nano-particulate silica sol–gel suspensions. Surf Coat Technol 182:199–203CrossRef Castro Y, Ferrari B, Moreno R, Durán A (2004) Coatings produced by electrophoretic deposition from nano-particulate silica sol–gel suspensions. Surf Coat Technol 182:199–203CrossRef
66.
Zurück zum Zitat Paussa L, Rosero-Navarro NC, Andreatta F, Castro Y, Duran A, Aparicio M, Fedrizzi L (2010) Inhibition effect of cerium in hybrid sol–gel films on aluminium alloy AA2024. Surf Interface Anal 42:299–305CrossRef Paussa L, Rosero-Navarro NC, Andreatta F, Castro Y, Duran A, Aparicio M, Fedrizzi L (2010) Inhibition effect of cerium in hybrid sol–gel films on aluminium alloy AA2024. Surf Interface Anal 42:299–305CrossRef
67.
Zurück zum Zitat Rosero-Navarro NC, Pellice SA, Durán A, Aparicio M (2008) Effects of Ce-containing sol–gel coatings reinforced with SiO2 nanoparticles on the protection of AA2024. Corros Sci 50:1283–1291CrossRef Rosero-Navarro NC, Pellice SA, Durán A, Aparicio M (2008) Effects of Ce-containing sol–gel coatings reinforced with SiO2 nanoparticles on the protection of AA2024. Corros Sci 50:1283–1291CrossRef
68.
Zurück zum Zitat Volarič B, Milošev I (2017) Rare earth chloride and nitrate salts as individual and mixed inhibitors for aluminium alloy 7075-T6 in chloride solution. Corros Eng Sci Technol 52:201–211.CrossRef Volarič B, Milošev I (2017) Rare earth chloride and nitrate salts as individual and mixed inhibitors for aluminium alloy 7075-T6 in chloride solution. Corros Eng Sci Technol 52:201–211.CrossRef
69.
Zurück zum Zitat Volaric B, Rodic P, Milosev I (2015) Cerium and lanthanum salts used as individual and combined inhibitors for corrosion protection of AA7075-T6 in chloride solution. Meet Abstr 2015-02:685–685 Volaric B, Rodic P, Milosev I (2015) Cerium and lanthanum salts used as individual and combined inhibitors for corrosion protection of AA7075-T6 in chloride solution. Meet Abstr 2015-02:685–685
70.
Zurück zum Zitat Rodič P, Milošev I (2016) Corrosion inhibition of pure aluminium and alloys AA2024-T3 and AA7075-T6 by cerium(III) and cerium(IV) salts. J Electrochem Soc 163:C85–C93CrossRef Rodič P, Milošev I (2016) Corrosion inhibition of pure aluminium and alloys AA2024-T3 and AA7075-T6 by cerium(III) and cerium(IV) salts. J Electrochem Soc 163:C85–C93CrossRef
72.
Zurück zum Zitat Rosace G, Guido E, Colleoni C, Brucale M, Piperopoulos E, Milone C, Plutino MR (2017) Halochromic resorufin-GPTMS hybrid sol-gel: chemical-physical properties and use as pH sensor fabric coating. Sens Actuators B Chem 241:85–95CrossRef Rosace G, Guido E, Colleoni C, Brucale M, Piperopoulos E, Milone C, Plutino MR (2017) Halochromic resorufin-GPTMS hybrid sol-gel: chemical-physical properties and use as pH sensor fabric coating. Sens Actuators B Chem 241:85–95CrossRef
73.
Zurück zum Zitat Mansfeld F, Wang Y (1995) Development of “stainless” aluminum alloys by surface modification. Mater Sci Eng A 198:51–61CrossRef Mansfeld F, Wang Y (1995) Development of “stainless” aluminum alloys by surface modification. Mater Sci Eng A 198:51–61CrossRef
74.
Zurück zum Zitat Rosero-Navarro NC, Paussa L, Andreatta F, Castro Y, Durán A, Aparicio M, Fedrizzi L (2010) Optimization of hybrid sol–gel coatings by combination of layers with complementary properties for corrosion protection of AA2024. Prog Org Coat 69:167–174CrossRef Rosero-Navarro NC, Paussa L, Andreatta F, Castro Y, Durán A, Aparicio M, Fedrizzi L (2010) Optimization of hybrid sol–gel coatings by combination of layers with complementary properties for corrosion protection of AA2024. Prog Org Coat 69:167–174CrossRef
75.
Zurück zum Zitat Lakshmi RV, Aruna ST, Sampath S (2017) Ceria nanoparticles vis-à-vis cerium nitrate as corrosion inhibitors for silica-alumina hybrid sol-gel coating. Appl Surf Sci 393:397–404CrossRef Lakshmi RV, Aruna ST, Sampath S (2017) Ceria nanoparticles vis-à-vis cerium nitrate as corrosion inhibitors for silica-alumina hybrid sol-gel coating. Appl Surf Sci 393:397–404CrossRef
Metadaten
Titel
Hybrid sol–gel coatings based on GPTMS/TEOS containing colloidal SiO2 and cerium nitrate for increasing corrosion protection of aluminium alloy 7075-T6
verfasst von
Urša Tiringer
Ingrid Milošev
Alicia Durán
Yolanda Castro
Publikationsdatum
30.01.2018
Verlag
Springer US
Erschienen in
Journal of Sol-Gel Science and Technology / Ausgabe 3/2018
Print ISSN: 0928-0707
Elektronische ISSN: 1573-4846
DOI
https://doi.org/10.1007/s10971-017-4577-7

Weitere Artikel der Ausgabe 3/2018

Journal of Sol-Gel Science and Technology 3/2018 Zur Ausgabe

Original Paper: Sol-gel and hybrid materials for optical, photonic and optoelectronic applications

Preparation of dye-sensitized solar cells using template free TiO2 nanotube arrays for enhanced power conversion

Original Paper: Nano-structured materials (particles, fibers, colloids, composites, etc.)

Formation mechanism of the rutile-phase of TiO2 nanorods on Ti foil substrate by gel-calcination method

Original Paper: Functional coatings, thin films and membranes (including deposition techniques)

Synthesis and characterization of silver-rich coatings loaded with functionalized clay nanoparticles

Original Paper: Nano-structured materials (particles, fibers, colloids, composites, etc.)

Tuning the ferromagnetic resonance by doping strontium hexa-ferrite nanopowders

Original Paper: Sol-gel and hybrid materials for energy, environment and building applications

Combined redox and plasmonic electrochromic effects in WO3/ITO double-layer films

    Marktübersichten

    Die im Laufe eines Jahres in der „adhäsion“ veröffentlichten Marktübersichten helfen Anwendern verschiedenster Branchen, sich einen gezielten Überblick über Lieferantenangebote zu verschaffen.