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Hybrid GaAs-Nanowire–Carbon-Nanotube Flexible Photovoltaics

机译:混合GaAs-纳米线-碳-纳米管柔性光伏

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摘要

A simple method is described for the preparation of carbon nanotube (CNT) composite films containing Au nanoparticles, which act as adatom collection agents promoting the growth of core–shell p-n junction GaAs nanowires (NW), according to the vapor–liquid–solid mechanism. This approach for composite film formation requires no covalent modification of the CNTs. GaAs NWs obtained are randomly aligned with respect to the CNT substrate in a densely packed arrangement. Nanohybrid films, incorporating coaxial GaAs NWs as the active, light-harvesting medium are used in the fabrication of photovoltaic cells, exhibiting conversion efficiencies up to 0.32%. Doping experiments confirm that conduction is not dominated by Schottky barriers at contact interfaces. The NW/CNT solar cells are shown to retain function following bending up to a curve radius of 12.5 mm, illustrating the potential of these novel materials in flexible device applications.
机译:描述了一种简单的方法来制备包含金纳米颗粒的碳纳米管(CNT)复合膜,根据汽-液-固机理,该膜可作为原子收集剂,促进核-壳pn结GaAs纳米线(NW)的生长。这种用于复合膜形成的方法不需要对CNT进行共价修饰。所获得的GaAs NW相对于CNT衬底以密集排列的方式随机排列。纳杂膜以同轴GaAs NW作为活性的集光介质,被用于制造光伏电池,其转换效率高达0.32%。掺杂实验证实,导电不受接触界面上的肖特基势垒的支配。 NW / CNT太阳能电池在弯曲到12.5 mm的弯曲半径后仍保持功能,这说明了这些新型材料在柔性设备应用中的潜力。

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