材料科学技术(英文版)2022,Issue(19) :131-142.

Silicone/graphene oxide co-cross-linked aerogels with wide-temperature mechanical flexibility,super-hydrophobicity and flame resistance for exceptional thermal insulation and oil/water separation

Zhao-Hui Zhang Zuan-Yu Chen Yi-Hao Tang Yu-Tong Li Dequan Ma Guo-Dong Zhang Rabah Boukherroub Cheng-Fei Cao Li-Xiu Gong Pingan Song Kun Cao Long-Cheng Tang
材料科学技术(英文版)2022,Issue(19) :131-142.

Silicone/graphene oxide co-cross-linked aerogels with wide-temperature mechanical flexibility,super-hydrophobicity and flame resistance for exceptional thermal insulation and oil/water separation

Zhao-Hui Zhang 1Zuan-Yu Chen 2Yi-Hao Tang 3Yu-Tong Li 2Dequan Ma 4Guo-Dong Zhang 2Rabah Boukherroub 5Cheng-Fei Cao 2Li-Xiu Gong 2Pingan Song 6Kun Cao 7Long-Cheng Tang2
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作者信息

  • 1. College of Material,Chemistry and Chemical Engineering,Key Laboratory of Organosilicon Chemistry and Material Technology of MoE,Hangzhou Normal University,Hangzhou,311121,China;Univ.Lille,CNRS,Centrale Lille,Univ.Polytechnique Hauts-de-France,UMR 8520-IEMN,F-59000 Lille,France
  • 2. College of Material,Chemistry and Chemical Engineering,Key Laboratory of Organosilicon Chemistry and Material Technology of MoE,Hangzhou Normal University,Hangzhou,311121,China
  • 3. China Helicopter Research and Development Institute,Jingdezhen.333001,China
  • 4. Tianjin Helicopter Co.,Ltd.,Tianjin,300308,China
  • 5. Univ.Lille,CNRS,Centrale Lille,Univ.Polytechnique Hauts-de-France,UMR 8520-IEMN,F-59000 Lille,France
  • 6. Centre for Future Materials,University of Southern Queensland.Springfield Campus,QLD,4300,Australia
  • 7. State Key Laboratory of Chemical Engineering,College of Chemical and Biological Engineering,Zhejiang University,Hangzhou,310027,China
  • 折叠

Abstract

Development of multifunctional and high-performance silicone aerogel is highly required for various promising applications.However,unstable cross-linking structure and poor thermal stability of silicone network as well as complicated processing restrict the practical use significantly.Herein,we report a facile and versatile ambient drying strategy to fabricate lightweight,wide-temperature flexible,super-hydrophobic and flame retardant silicone composite aerogels modified with low-content functionalized graphene oxide(FGO).After optimizing silane molecules,incorporation of y-aminopropyltriethoxysilane functionalization is found to promote the dispersion stability of GO during the hydrolysis-polymerization process and thus produce the formation of unique strip-like co-cross-linked network.Consequently,the aerogels containing~2.0 wt%FGO not only possess good cyclic compressive stability under strain of 70%for 100 cycles and outstanding mechanical reliability in wide temperature range(from liquid nitrogen to 350℃),but also display excellent flame resistance and super-hydrophobicity.Further,the optimized silicone/FGO aerogels display exceptional thermal insulating performance superior to pure aerogel and hydrocarbon polymer foams,and they also show efficient oil absorption and separation capacity for var-ious solvents and oil from water.Clearly,this work provides a new route for the rational design and development of advanced silicone composite aerogels for multifunctional applications.

Key words

Silicone composite aerogel/Functionalized graphene oxide/Mechanical robustness/Flame resistance/Super-hydrophobicity

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基金项目

国家自然科学基金(51973047)

国家自然科学基金(12002112)

Science Foundation and Technology Project of Zhejiang Province(Z22E035302)

Science Foundation and Technology Project of Shandong Province(ZR2020LFG004)

Project for Science and Technology Program of Hangzhou(20191203B16)

Project for Science and Technology Program of Hangzhou(20201203B136)

出版年

2022
材料科学技术(英文版)
中国金属学会 中国材料研究学会 中国科学院金属研究所

材料科学技术(英文版)

CSTPCDCSCDSCI
影响因子:0.657
ISSN:1005-0302
参考文献量67
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