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Synthesis of cuprous oxide nanocomposite electrodes by room-temperature chemical partial reduction

机译:室温化学部分还原法合成氧化亚铜纳米复合电极

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摘要

We demonstrate a template-free synthetic approach for the preparation of a highly conductive Cu/Cu_2O nanocomposite electrode by a chemical reduction process. Cu_2O octahedra were prepared through chemical dehydrogenation of as-synthesized Cu(OH)_2 nanowire precursors. To provide a sufficiently electron-conducting network, the Cu_2O particles were transformed into Cu/Cu_2O nanocomposites by an intentional reduction process. The Cu/Cu_2O nanocomposite electrodes showed enhanced cycling performance compared to Cu_2O particles. Furthermore, their rate capabilities were superior to those of their mechanically mixed Cu/Cu_2O counterparts. This enhanced electrochemical performance of the hybrid Cu/Cu_2O nanocomposites was ascribed to the formation of homogeneous nanostructures, offering an efficient electron-transport path provided by the presence of highly dispersed Cu nanoparticles.
机译:我们演示了通过化学还原工艺制备高导电性Cu / Cu_2O纳米复合电极的无模板合成方法。通过合成后的Cu(OH)_2纳米线前体的化学脱氢制备Cu_2O八面体。为了提供足够的电子导电网络,通过有意的还原过程将Cu_2O颗粒转变为Cu / Cu_2O纳米复合材料。与Cu_2O颗粒相比,Cu / Cu_2O纳米复合电极显示出增强的循环性能。此外,它们的速率能力优于机械混合的Cu / Cu_2O对应物。杂化的Cu / Cu_2O纳米复合材料的这种增强的电化学性能归因于均质纳米结构的形成,通过高度分散的Cu纳米粒子的存在提供了有效的电子传输路径。

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