首页> 美国卫生研究院文献>Polymers >Light-Induced Actuation of Poly(dimethylsiloxane) Filled with Graphene Oxide Grafted with Poly(2-(trimethylsilyloxy)ethyl Methacrylate)
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Light-Induced Actuation of Poly(dimethylsiloxane) Filled with Graphene Oxide Grafted with Poly(2-(trimethylsilyloxy)ethyl Methacrylate)

机译:石墨烯与聚(2-(三甲基甲硅烷氧基)乙基甲基丙烯酸酯接枝的氧化石墨烯)填充的聚二甲基硅氧烷的光诱导驱动

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摘要

This study serves to combine two approaches into one single step, to achieve a significant improvement of the light-induced actuation capabilities. Graphene oxide (GO) is an inert material, from the electrical and thermal conductivity point of view, and is incompatible with the usually-used poly(dimethylsiloxane) (PDMS) matrix. During surface-modification by surface-initiated atom transfer radical polymerization, the GO was transformed into a conducting and compatible material with the PDMS showing enormous light-induced actuation capability. The GO surface-modification with poly(2-(trimethylsilyloxy)ethyl methacrylate) (PHEMATMS) chains was confirmed by transmission electron microscopy and thermogravimetric analysis, with an on-line monitoring of gasses using FTIR. The improved compatibility was elucidated using contact angle and dielectric properties measurements. The PHEMATMS shell was investigated using gel permeation chromatography and nuclear magnetic resonance. The improved electric conductivity was measured using the four-point probe method and by Raman spectroscopy. The very important mechanical properties were elucidated using dynamic mechanical analysis, and with the help of thermo-mechanic analysis for the light-induced actuation. The excellent actuation capabilities observed, with changes in the length of around 0.8% at 10% pre-strain, are very promising from the point of view of applications.
机译:这项研究旨在将两种方法结合为一个步骤,以显着提高光致驱动能力。从导电性和导热性的角度来看,氧化石墨烯(GO)是一种惰性材料,并且与通常使用的聚(二甲基硅氧烷)(PDMS)基体不兼容。在通过表面引发的原子转移自由基聚合进行表面改性的过程中,GO与PDMS转变为导电且相容的材料,显示出巨大的光致驱动能力。通过透射电子显微镜和热重分析,并使用FTIR在线监测气体,证实了用聚(2-(三甲基甲硅烷基氧基)甲基丙烯酸乙酯(PHEMATMS)链进行的GO表面改性。使用接触角和介电性质测量来阐明改善的相容性。使用凝胶渗透色谱法和核磁共振研究了PHEMATMS壳。使用四点探针法和拉曼光谱法测量改善的电导率。通过动态力学分析,并借助热力学分析对光致驱动进行了阐述,从而阐明了非常重要的机械性能。从应用的角度来看,在10%的预应变下观察到的出色的致动能力(长度变化约0.8%)非常有前途。

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