4.7 Article

Rayleigh Instability Driven Nodular Cu2O Nanowires via Carbothermal Reduction of CuO Nanowires

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CRYSTAL GROWTH & DESIGN
卷 15, 期 4, 页码 1588-1595

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AMER CHEMICAL SOC
DOI: 10.1021/cg500784y

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  1. McDonnell Academy Global Energy and Environment Partnership (MAGEEP)
  2. International Center for Advanced Renewable Energy and Sustainability (I-CARES)

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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.

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