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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Layer-by-Layer Assembly for Graphene-Based Multi layer Nanocomposites: Synthesis and Applications
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Layer-by-Layer Assembly for Graphene-Based Multi layer Nanocomposites: Synthesis and Applications

机译:石墨烯基多层纳米复合材料的逐层组装:合成与应用

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Two-dimensional (2D) graphene sheets have become a versatile platform for the fabrication of innovative hybrid materials with various functions due to their unique electrical, optical, thermal, and mechanical properties. The preparation of graphene-based composites with nanoscale precision is highly important for reproducible and controllable performance through the analysis of interplay between each component. In particular, the layer-by-layer (LbL) assembly technique is known as a simple, inexpensive, and versatile process for the fabrication of highly ordered multilayer film structures from various types of materials. The LbL structures capable of controlling nanoscale composition and architectures are achieved through the sequential adsorption of oppositely charged components by attractive forces such as electrostatic interactions. In this review, we will focus on the recent progress in graphene-based nanocomposites hybridized with various nanomaterials such as carbon nanomaterials, polymers, and inorganic nanoparticles by the LbL assembly. Multilayered graphene nanocomposites exhibit improved physical/chemical properties and superior performance compared with the individual components due to the synergistic effects in various applications including electric devices, energy storage and conversion, and biological usages.
机译:二维(2D)石墨烯片因其独特的电,光,热和机械性能而成为制造具有多种功能的创新混合材料的通用平台。通过分析每个组件之间的相互作用,制备具有纳米级精度的石墨烯基复合材料对于可再现和可控制的性能非常重要。特别地,层-层(LbL)组装技术被认为是用于由各种类型的材料制造高度有序的多层膜结构的简单,廉价且通用的工艺。能够控制纳米级成分和结构的LbL结构是通过吸引力(例如静电相互作用)顺序吸附带相反电荷的组分来实现的。在本文中,我们将重点关注通过LbL组件与各种纳米材料(例如碳纳米材料,聚合物和无机纳米颗粒)杂交的石墨烯基纳米复合材料的最新进展。多层石墨烯纳米复合材料由于在各种应用(包括电子设备,能量存储和转换以及生物用途)中的协同效应,因此与单个组分相比具有改善的物理/化学性质和优异的性能。

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