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Pressure-induced assemblies and structures of graphitic-carbon sheet encapsulated Au nanoparticles

机译:Pressure-induced组件和结构石墨碳板封装非盟纳米粒子

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摘要

A novel strategy of using hydrostatic pressures to synthesize gold-carbon (Au-C) nanohybrid materials is explored. The stable face-centered-cubic (fcc) Au undergoes a structural phase transition to a mixture of primitive orthorhombic and cubic phases as the carbon phase acquires a highly ordered onion-like carbon (OLC) structure which encapsulates the Au nanoparticles, thereby exerting an additional pressure. Increasing the pressure results in a one dimensional (1-D) chain-like structure with the primitive cubic Au nanoparticles contained in an amorphous carbon matrix. The OLC structure allows the formation of quenchable Au nanoparticle phases with the primitive close packing and Au-C hybrids with new mesoscopic structures. Under pressure, we observe the formation of a hybrid material composed of a poorly conducting matrix made of amorphous carbon and conducting OLC-encapsulated Au nanoparticles. The electrical conductivity of this hybrid material under pressure reveals a percolation threshold. We present a new synthesis approach to explore the interplay between atomic and mesoscopic structures and the electrical conductivity of metal hybrid structures.
机译:小说用静水压力的策略合成gold-carbon nanohybrid (Au-C)探讨了材料。面心立方(fcc)盟经历结构相变的混合物原始的斜方晶系的和立方阶段碳阶段获得一个高度有序的洋葱式的碳(共同体)结构封装非盟纳米粒子,从而施加额外的压力。一维(一维)连锁结构原始立方Au纳米粒子中一个非晶碳的矩阵。允许可抑制的非盟的形成纳米颗粒与原始的阶段包装和Au-C杂交新介观结构。形成一种混合材料组成的不进行矩阵由无定形碳并进行OLC-encapsulated Au纳米颗粒。这种混合的导电性材料揭示了渗流的压力下阈值。探索和原子之间的相互作用介观结构和电导电性的金属混合结构。

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