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Synthesis and photocatalysis of hierarchical heteroassemblies of ZnO branched nanorod arrays on Ag core nanowires

机译:合成及光催化的等级制度heteroassemblies的氧化锌奈米棒阵列在Ag)核心纳米线

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摘要

In this paper, hierarchical heteroassemblies made of interwoven Ag core nanowires (NWs) covered by ZnO branched nanorods (ZnO BNRs) are successfully prepared on a large scale via a solution bottom-up strategy coupling with a templating method. Briefly, heteroepitaxial growth of ZnO nanorods (ZnO NRs) on ZnO seed-coated Ag NWs is first conducted to form fluffy worm-like heteroassemblies. Then, by templating these, ZnO BNRs with exposed high-energy (001) planes on Ag NWs are fabricated with preserved morphology through the second nucleation and growth processes. When evaluated with UV-induced photo-degradation of rhodamine B (RhB), the heteroassemblies of Ag NWs-ZnO BNRs exhibit high photocatalytic properties, due to the decisive roles of the synergistic effect of the unique metal-semiconductor heterojunction and the hierarchical fluffy worm-like morphologies as well as the (001) plane-dominant surface of ZnO BNRs which are attractive for highly efficient photocatalysis.
机译:本文分层heteroassemblies交织Ag)的核心纳米线(NWs)覆盖纳米氧化锌分支(氧化锌浅层)成功准备大规模通过一个解决方案自底向上的策略模板的耦合方法。纳米氧化锌(NRs)氧化锌seed-coated Ag)所在地首先进行形成蓬松的蠕虫heteroassemblies。浅层与暴露高能Ag)(001)的飞机NWs与保存形态捏造通过第二个成核和生长流程。;降解罗丹明B (RhB)heteroassemblies Ag的NWs-ZnO浅层表现出高光催化性质,由于决定性的协同效应的独特角色金属半导体异质结和分层毛茸茸的蠕虫形态的(001)plane-dominant氧化锌表面对高效浅层的吸引力光催化作用。

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