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Novel Copper-Zinc Oxide Arrayed Nanoatalysts for Hydrogen Production Applications

机译:新型铜 - 氧化锌排列纳米型纳米固化剂

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We report a simple and effective wet chemical technique for facile synthesis of large-scale and arrayed copper-zinc oxide nanostructures in regard to high performance of hydrogen production. The zinc oxide arrays as support were grown by a template-free aqueous route and subsequently the copper catalysts were impregnated on zinc oxide surface at low temperature by means of spontaneous reduction to form the hierarchical core-shell type nanostructures. Systematic analyses were employed to examine morphological, component, and structural characterizations of arrayed copper-zinc oxide nanostructures. In particular, these nanocomposites exhibited high methanol conversion, hydrogen production, and carbon dioxide selectivity at lower reaction temperature in comparison with the conventional catalysts. As shown above, our work here could open up new possibilities for the preparation of core-shell type copper-zinc oxide nanocomposites in micro reformed hydrogen fuel cell ( RHFC) devices applications.
机译:我们报告了一种简单且有效的湿化学化学技术,用于容易合成大规模和阵列铜 - 氧化锌纳米结构的高性能。作为载体的氧化锌阵列通过无模板的含水途径生长,随后通过自发减少在低温下在低温下浸渍铜催化剂以形成分层核心 - 壳型纳米结构。使用系统分析来检查排列铜氧化锌纳米结构的形态学,组分和结构特征。特别地,与常规催化剂相比,这些纳米复合材料在较低反应温度下表现出高甲醇转化,氢气产生和二氧化碳选择性。如上所示,我们这里的工作可以开辟了在微重整氢燃料电池(RHFC)器件应用中制备核 - 壳型铜氧化锌纳米复合材料的新可能性。

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