首页> 外文期刊>Journal of Materials Science >In situ fabrication of platinum/graphene composite shell on polymer microspheres through reactive self-assembly and in situ reduction
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In situ fabrication of platinum/graphene composite shell on polymer microspheres through reactive self-assembly and in situ reduction

机译:通过反应性自组装和原位还原在聚合物微球上原位制备铂/石墨烯复合壳

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摘要

We present a simple method to fabricate a uniform-sized graphene-metal-polymer composite microsphere of core-shell structure. On the surface of amine-functionalized polymer microsphere, graphene oxide (GO) sheets were affixed to give a core-shell structure by self-assembly process followed by the immobilization of platinum (Pt) ions to the assembled GO shell. Subsequently, they were chemically reduced in situ converting both GO and Pt ions to reduced GO (RGO) and Pt nanoparticles (NPs), respectively. As a result, a robust RGO-Pt composite shell, composed of RGO sheets and well-distributed Pt NPs, was fabricated on the microsphere surface. Meanwhile, the insulative GO shell was converted to the conductive RGO-Pt shell giving 24.0 S m~(-1) of electrical conductivity. We demonstrated that the electrical property of the shell was significantly improved by the incorporation of Pt NPs.
机译:我们提出一种简单的方法来制造核壳结构的均一尺寸的石墨烯-金属-聚合物复合微球。在胺官能化的聚合物微球表面上,通过自组装过程将氧化石墨烯(GO)薄片固定在核壳结构上,然后将铂(Pt)离子固定在组装好的GO壳上。随后,将它们原位化学还原,将GO和Pt离子分别转化为还原的GO(RGO)和Pt纳米颗粒(NPs)。结果,在微球表面上制成了由RGO片和分布均匀的Pt NP组成的坚固的RGO-Pt复合壳。同时,将绝缘GO外壳转换为导电RGO-Pt外壳,从而提供24.0 S m〜(-1)的电导率。我们证明了通过掺入Pt NP可以显着改善外壳的电性能。

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