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首页> 外文期刊>Crystal growth & design >Rayleigh Instability Driven Nodular Cu2O Nanowires via Carbothermal Reduction of CuO Nanowires
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Rayleigh Instability Driven Nodular Cu2O Nanowires via Carbothermal Reduction of CuO Nanowires

机译:瑞利不稳定性驱动的球形氧化铜纳米线的碳热还原

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摘要

Nodular cuprous oxide (Cu2O) vertical nanowire (NW) arrays with a length of more than 20 mu m and diameter of similar to 300 nm have been synthesized by the carbothermal reduction of thermally grown cupric oxide (CuO) NWs. The transformation initiates at a low temperature of 350 degrees C. Two important effects are observed: First, the CuO -> Cu2O reduction occurs by oxygen out diffusion under a highly reducing atmosphere afforded by the presence of carbon monoxide (CO). Second, the surface reduction creates instabilities, which propagate and grow into a string of nodules along the length of the Cu2O NWs. This effect is determined to be due to Rayleigh instability, but initiated via Cu2O phase transformation.
机译:通过热生长的氧化铜(CuO)NW的碳热还原,合成了长度大于20μm且直径近似于300 nm的结节状氧化亚铜(Cu2O)垂直纳米线(NW)阵列。该转变在350℃的低温下开始。观察到两个重要的效果:首先,在存在一氧化碳(CO)的情况下,在高度还原的气氛下,氧气向外扩散导致CuO-> Cu2O还原。其次,表面还原会产生不稳定性,该不稳定性会沿着Cu2O NW的长度传播并长成一串结节。确定该效应是由于瑞利不稳定性引起的,但是是通过Cu2O相变引发的。

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