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使用具有坚固纳米网络结构和出色界面效应的超疏水二氧化硅气凝胶增强硅橡胶的性能

Performance Enhancement of Silicone Rubber Using Superhydrophobic Silica Aerogel with Robust Nanonetwork Structure and Outstanding Interfacial Effect.

作者信息

Huang Longjin, Song Zihao, Song Xiaomin, Yu Fengmei, Lu Ai, He Hongjiang, Liu Wei, Wang Zihan, Zhang Ping, Li Shichun, Zhao Xueyan, Cui Sheng, Zhu Chunhua, Liu Yu

机构信息

State Key Laboratory of Materials-Oriented Chemical Engineering, College of Material Science and Engineering, Nanjing Tech University, Nanjing 211816, China.

Institute of Chemical Materials, China Academy of Engineering Physics, Mianyang 621900, China.

出版信息

ACS Appl Mater Interfaces. 2024 May 1;16(17):22580-22592. doi: 10.1021/acsami.4c03227. Epub 2024 Apr 18.

Abstract

The application of high-performance rubber nanocomposites has attracted wide attention, but its development is limited by the imbalance of interface and network effects caused by fillers. Herein, an ultrastrong polymer nanocomposite is successfully designed by introducing a superhydrophobic and mesoporous silica aerogel (HSA) as the filler to poly(methyl vinyl phenyl) siloxane (PVMQ), which increased the PVMQ elongation at break (∼690.1%) by ∼9.3 times and the strength at break (∼6.6 MPa) by ∼24.3 times. Furthermore, HSA/PVMQ with a high dynamic storage modulus (') of ∼12.2 MPa and high Payne effect (Δ') of ∼9.4 MPa is simultaneously achieved, which is equivalent to 2-3 times that of commercial fumed silica reinforced PVMQ. The superior performance is attributed to the filler-rubber interfacial interaction and the robust filler-rubber entanglement network which is observed by scanning electron microscopy. When the HSA-PVMQ entanglement network is subjected to external stress, both the HSA and bound-PVMQ chains are synergistically involved in resisting structural evolution, resulting in the maximized energy dissipation and deformation resistance through the desorption of the polymer chain and the slip/interpenetrating of the exchange hydrogen bond pairs. Hence, highly aggregated nanoporous silica aerogels may soon be widely used in the application of reinforced silicone rubber or other polymers shortly.

摘要

高性能橡胶纳米复合材料的应用已引起广泛关注,但其发展受到填料导致的界面和网络效应失衡的限制。在此,通过将超疏水介孔二氧化硅气凝胶(HSA)作为填料引入聚(甲基乙烯基苯基)硅氧烷(PVMQ)中,成功设计出一种超强聚合物纳米复合材料,该材料使PVMQ的断裂伸长率(约690.1%)提高了约9.3倍,断裂强度(约6.6 MPa)提高了约24.3倍。此外,同时实现了具有约12.2 MPa的高动态储能模量(')和约9.4 MPa的高佩恩效应(Δ')的HSA/PVMQ,这相当于商业气相二氧化硅增强PVMQ的2至3倍。优异的性能归因于填料 - 橡胶界面相互作用以及通过扫描电子显微镜观察到的强大的填料 - 橡胶缠结网络。当HSA - PVMQ缠结网络受到外部应力时,HSA和结合的PVMQ链协同参与抵抗结构演变,通过聚合物链的解吸以及交换氢键对的滑动/互穿,实现能量耗散和抗变形能力的最大化。因此,高度聚集的纳米多孔二氧化硅气凝胶可能很快会广泛应用于增强硅橡胶或其他聚合物的应用中。

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