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Direct synthesis of silver/polymer/carbon nanocables via a simple hydrothermal route

机译:通过简单的水热途径直接合成银/聚合物/碳纳米电缆

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High-yield silver/polymer/carbon nanocables were synthesized via a one-step simple hydrothermal route by using silver chloride and glucose as precursors. High-resolution TEM and element mapping proved that as-prepared nanocables consist of a silver nanowire core, a polymer inner shell, and a graphitic carbon outer shell. A three-step growth mechanism was proposed to explain the growth of Such three-layer nanocables, i.e. the formation of silver nanowires, the glycosidation of glucose molecules on silver nanowire surface and the carbonization of the outmost glycosidation layer. We believe that reaction temperature plays the key role in the polymerization of glucose and sequent surface-carbonization. (C) 2008 Elsevier Inc. All rights reserved.
机译:以氯化银和葡萄糖为前体,通过一步简单的水热法合成了高产率的银/聚合物/碳纳米电缆。高分辨率TEM和元素映射证明,所制备的纳米电缆由银纳米线芯,聚合物内壳和石墨碳外壳组成。提出了三步生长机理来解释这种三层纳米电缆的生长,即银纳米线的形成,银纳米线表面上葡萄糖分子的糖苷化和最外糖苷化层的碳化。我们相信反应温度在葡萄糖的聚合和随后的表面碳化中起关键作用。 (C)2008 Elsevier Inc.保留所有权利。

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