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Self-assembly of nanomaterials at fluid interfaces

机译:纳米材料在流体界面的自组装

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摘要

Recent developments in the field of the self-assembly of nanoscale materials such as nanoparticles, nanorods and nanosheets at liquid/liquid interfaces are reviewed. Self-assembly behavior of both biological and synthetic particles is discussed. For biological nanoparticles, the nanoparticle assembly at fluid interfaces provides a simple route for directing nanoparticles into 2D or 3D constructs with hierarchical ordering. The interfacial assembly of single-walled carbon nanotubes (SWCNTs) at liquid interfaces would play a key role in applications such as nanotube fractionation, flexible electronic thin-film fabrication and synthesis of porous SWCNT/polymer composites foams. Liquids can be structured by the jamming of nanoparticle surfactants at fluid interfaces. By controlling the interfacial packing of nanoparticle surfactants using external triggers, a new class of materials can be generated that combines the desirable characteristics of fluids such as rapid transport of energy carriers with the structural stability of a solid.
机译:综述了在液体/液体界面处的纳米级材料例如纳米颗粒,纳米棒和纳米片的自组装领域的最新进展。讨论了生物和合成颗粒的自组装行为。对于生物纳米粒子,流体界面处的纳米粒子组件提供了一种简单的途径,可以将纳米粒子按层次顺序引导到2D或3D构造中。单壁碳纳米管(SWCNT)在液体界面的界面组装将在诸如纳米管分馏,柔性电子薄膜制造以及多孔SWCNT /聚合物复合材料泡沫的合成等应用中发挥关键作用。可以通过在流体界面处堵塞纳米颗粒表面活性剂来构造液体。通过使用外部触发装置控制纳米颗粒表面活性剂的界面堆积,可以产生将流体的理想特性(例如能量载体的快速运输)与固体的结构稳定性相结合的新型材料。

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