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A Simple Method to Control the Growth of Copper Oxide Nanowires for Solar Cells and Catalytic Applications

机译:一种简单的方法,用于控制太阳能电池和催化应用的氧化铜纳米线的生长

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摘要

Copper oxide nanowires (CuO NWs) were synthesized by thermally oxidizing copper foils at various heating rates. It has been shown that both monoclinic CuO and cubic Cu2O phases were grown on the copper surface with NW diameters of almost 200 nm for all samples. While NWs were shown to be dense for low heating rates, they end up being broken for quick heating. The underlying growth mechanism was described basing on a detailed comprehensive study, and the effect of the heating rate was explained by considering the thermal shock effect and in-plane tensile stresses on curved surfaces. This study contributes to the research for suitable methods for the use of recyclable metals in technological applications. In particular, copper oxide NWs were deposited, for the first time, on FTO/glass substrates, and the optical characterization revealed that this method is a promising way to improve the surface contact for solar cells and catalytic applications.
机译:通过以各种加热速率进行热氧化铜箔来合成氧化铜纳米线(CUO NWS)。已经证明,对于所有样品,铜表面在铜表面上生长单斜晶CuO和立方Cu 2 O相的含量近200nm。虽然NW被证明是密集的低加热速率,但它们最终被打破以便快速加热。潜在的增长机制是基于详细的综合研究,通过考虑弯曲表面上的热冲击效果和面内拉伸应力来解释加热速率的效果。该研究有助于研究技术应用中可回收金属的合适方法。特别地,首次在FTO /玻璃基板上沉积氧化铜NWS,并且光学表征显示该方法是改善太阳能电池和催化应用的表面接触的有希望的方法。

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