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首页> 外文期刊>RSC Advances >Design of a nanoporous interfacial SiO2 layer in polysiloxane-graphene oxide nanocomposites for efficient stress transmission
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Design of a nanoporous interfacial SiO2 layer in polysiloxane-graphene oxide nanocomposites for efficient stress transmission

机译:聚硅氧烷 - 石墨烯氧化物纳米复合材料中纳米孔界面SiO2层的设计,用于高效应力传递

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摘要

Interfacial interaction between graphene oxide (GEO) sheets and polysiloxane is important for the applications of GEO based silicone systems. However, polysiloxane is a polymer that suffers from poor affinity with graphene oxide, which has become a bottleneck for the integration and applications of GEO in such polymer matrixes. Here we introduce an effective approach to solve the problem by employing SiO2 as an interfacial layer. Being compatible with both GEO and silicone, the interfacial layer is nanoporous and tunable. Firstly, GEO was modified with nanoporous SiO2 via a sol-gel process. Secondly, GEO/SiO2 (GEOS) was integrated into a fluid-like hydroxyl terminated polydimethylsiloxane (PDMS-OH) through a solvent-free blending process. Thirdly, the GEOS/PDMS-OH matrix was vulcanized at room temperature (RTV), forming the final silicon rubber (SR) elastomer. A tensile strength of 3.36 MPa and a Young's modulus of 3.38 MPa were achieved for the RTV SR elastomer, higher than those of GEO (0.69 and 1.40 MPa) and fumed SiO2 (1.32 and 2.2 MPa) based ones at the same filling fractions. The strong interactions between SiO2 and GEO, as well as excellent compatibility between SiO2 and PDMS-OH, make SiO2 act as a bridge for stress transmission between GEO and PDMS-OH. Simultaneously, the adjustable nanoporous architecture at the GEO/PDMS-OH interface was demonstrated to be an important contributing factor for enhanced stress transmission and mechanical properties.
机译:石墨烯(Geo)片材和聚硅氧烷之间的界面相互作用对于Geo基硅氧烷系统的应用是重要的。然而,聚硅氧烷是一种患有与氧化石墨烯亲和力不良的聚合物,其已成为在这种聚合物基质中聚合物基质的整合和应用的瓶颈。在这里,我们介绍了一种通过使用SiO2作为界面层来解决问题的有效方法。兼容Geo和硅胶,界面层是纳米多孔和可调的。首先,通过溶胶 - 凝胶工艺用纳米多孔SiO 2改性Geo。其次,通过无溶剂混合方法将Geo / SiO 2(Geos)整合到流体样羟基封端的聚二甲基硅氧烷(PDMS-OH)中。第三,在室温(RTV)下,Geos / PDMS-OH基质硫化,形成最终的硅橡胶(SR)弹性体。对于RTV SR弹性体,实现了3.36MPa的拉伸强度和3.38MPa的杨氏模量,高于同一填充级分的基于Geo(0.69和1.40MPa)和浓烈的SiO 2(1.32和2.2MPa)。 SiO2和Geo之间的强相互作用,以及SiO2和PDMS-OH之间的优异相容性,使SiO2充当Geo和PDMS-OH之间的应力传输桥。同时,在Geo / PDMS-OH界面处的可调节纳米孔架构被证明是增强应力传输和机械性能的重要贡献因素。

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  • 来源
    《RSC Advances 》 |2016年第65期| 共11页
  • 作者单位

    Hangzhou Normal Univ Minist Educ Key Lab Organosilicon Chem &

    Mat Technol 58 Haishu Rd Hangzhou 311121 Zhejiang Peoples R China;

    Hangzhou Normal Univ Minist Educ Key Lab Organosilicon Chem &

    Mat Technol 58 Haishu Rd Hangzhou 311121 Zhejiang Peoples R China;

    Jiangnan Univ Sch Pharmaceut Sci 1800 Lihu Ave Wuxi 214122 Peoples R China;

    Nanjing Univ Sci &

    Technol Minist Educ Key Lab Soft Chem &

    Funct Mat 200 Xiao Lingwei St Nanjing 210094 Jiangsu Peoples R China;

    Nanjing Univ Sci &

    Technol Minist Educ Key Lab Soft Chem &

    Funct Mat 200 Xiao Lingwei St Nanjing 210094 Jiangsu Peoples R China;

    Hangzhou Normal Univ Minist Educ Key Lab Organosilicon Chem &

    Mat Technol 58 Haishu Rd Hangzhou 311121 Zhejiang Peoples R China;

    Hangzhou Normal Univ Minist Educ Key Lab Organosilicon Chem &

    Mat Technol 58 Haishu Rd Hangzhou 311121 Zhejiang Peoples R China;

    Hangzhou Normal Univ Minist Educ Key Lab Organosilicon Chem &

    Mat Technol 58 Haishu Rd Hangzhou 311121 Zhejiang Peoples R China;

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  • 正文语种 eng
  • 中图分类 化学 ;
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