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Synthesis of core-shell heterostructured Cu/Cu2O nanowires monitored by in situ XRD as efficient visible-light photocatalysts

机译:原位XRD监测的核壳异质结构Cu / Cu2O纳米线的合成作为有效的可见光光催化剂

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摘要

Core-shell heterostructured Cu/Cu2O nanowires with a high aspect ratio were synthesized from Cu foam using a novel oxidation/reduction process. In situ XRD was used as an efficient tool to acquire phase transformation details during the temperature-programmed oxidation of Cu foam and the subsequent reduction process. Based on knowledge of the crucial phase transformation, optimal synthesis conditions for producing high-quality CuO and core-shell Cu/Cu2O nanowires were determined. In favor of efficient charge separation induced by the special core-shell heterostructure and the advanced three-dimensional spatial configuration, Cu/Cu2O nanowires exhibited superior visible-light activity in the degradation of methylene blue. The present study illustrates a novel strategy for fabricating efficiently core-shell heterostructured nanowires and provides the potential for developing their applications in electronic devices, for environmental remediation and in solar energy utilization fields.
机译:采用新颖的氧化/还原工艺,由铜泡沫材料合成了具有高长径比的核-壳异质结构Cu / Cu2O纳米线。原位XRD用作在Cu泡沫的程序升温氧化和后续还原过程中获取相变细节的有效工具。基于关键相变的知识,确定了用于生产高质量CuO和核-壳Cu / Cu2O纳米线的最佳合成条件。为了通过特殊的核-壳异质结构和先进的三维空间构型诱导有效的电荷分离,Cu / Cu2O纳米线在亚甲基蓝的降解中表现出优异的可见光活性。本研究说明了一种有效制备核-壳异质结构纳米线的新策略,并为开发其在电子设备,环境修复和太阳能利用领域中的应用提供了潜力。

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