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首页> 外文期刊>Angewandte Chemie >Ligand-Assisted Co-Assembly Approach toward Mesoporous Hybrid Catalysts of Transition-Metal Oxides and Noble Metals: Photochemical Water Splitting
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Ligand-Assisted Co-Assembly Approach toward Mesoporous Hybrid Catalysts of Transition-Metal Oxides and Noble Metals: Photochemical Water Splitting

机译:过渡金属氧化物和贵金属的介孔杂化催化剂的配体辅助共组装方法:光化学水分解

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摘要

A bottom-up synthetic approach was developed for the preparation of mesoporous transition-metal-oxideoble-metal hybrid catalysts through ligand-assisted co-assembly of amphiphilic block-copolymer micelles and polymer-tethered noble-metal nanoparticles (NPs). The synthetic approach offers a general and straightforward method to precisely tune the sizes and loadings of noble-metal NPs in metal oxides. This system thus provides a solid platform to clearly understand the role of noble-metal NPs in photochemical water splitting. The presence of trace amounts of metal NPs (approximate to 0.1wt%) can enhance the photocatalytic activity for water splitting up to a factor of four. The findings can conceivably be applied to other semiconductorsoble-metal catalysts, which may stand out as a new methodology to build highly efficient solar energy conversion systems.
机译:通过自上而下的合成方法,通过两亲性嵌段共聚物胶束和聚合物束缚的贵金属纳米粒子(NPs)的配体辅助共组装,制备了介孔过渡金属氧化物/贵金属杂化催化剂。合成方法提供了一种通用且直接的方法,可以精确地调整金属氧化物中贵金属NP的大小和负载。因此,该系统提供了一个坚实的平台,可以清楚地了解贵金属NP在光化学水分解中的作用。痕量金属NP(约0.1wt%)的存在可以增强水分解的光催化活性,达到四倍。这些发现可以想像地应用于其他半导体/贵金属催化剂,它们可能成为构建高效太阳能转换系统的新方法而脱颖而出。

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