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首页> 外文期刊>Quimica nova >CHARACTERIZATION OF GERMANIUM NANOWIRES SYNTHESIZED USING COPPER AS CATALYST METAL
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CHARACTERIZATION OF GERMANIUM NANOWIRES SYNTHESIZED USING COPPER AS CATALYST METAL

机译:铜催化金属合成锗纳米线的表征

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This paper presents reliable synthesis of germanium nanowires by the vapor-liquid-solid method using copper as an alternative catalyst to gold, the most commonly used metal. The morphological study showed long range single-crystalline germanium nanowires with diamond structure and diameters ranging from 20 nm to 80 nm and lengths in tenths of a micrometer, which was much larger than the cross-section. In an investigation of electronic properties, devices built from a thin film of nanowires were studied and the semiconductor behavior of the samples confirmed, with variable range hopping identified as the main transport mechanism. Additionally, metal-nanowire contact behavior - ohmic or with Schottky barrier - was found to depend on the metal used in the device. Therefore, the possibility of controlling current-voltage behavior combined with the good crystalline quality of the nanowires renders these nanostructures an attractive option for future electronic and optoelectronic applications.
机译:本文介绍了通过汽-液-固方法可靠地合成锗纳米线,使用铜作为最常用金属金的替代催化剂。形态学研究表明,长距离单晶锗纳米线具有金刚石结构,直径范围为20 nm至80 nm,长度为十分之一微米,远大于横截面。在电子性能研究中,研究人员研究了由纳米线薄膜制成的器件,并确认了样品的半导体性能,其中可变范围跳跃是主要的传输机制。此外,发现金属-纳米线的接触行为-欧姆或具有肖特基势垒-取决于器件中使用的金属。因此,控制电流-电压行为与纳米线的良好结晶质量相结合的可能性使得这些纳米结构成为未来电子和光电应用的有吸引力的选择。

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