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首页> 外文期刊>New Journal of Chemistry >Controlled design of PtPd nanodendrite ornamented niobium oxynitride nanosheets for solar-driven water splitting
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Controlled design of PtPd nanodendrite ornamented niobium oxynitride nanosheets for solar-driven water splitting

机译:PTPD纳米二级装饰铌氧氮化物纳米型太阳能驱动水分裂设计的控制设计

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摘要

Developing efficient photocatalysts for the water splitting reaction is crucial in a fuel cell reaction. Herein, we present a facile road-map for one-pot fabrication of PtPd nanodendrite (ND) ornamented niobium oxynitride nanosheets (PtPd/NbON) for solar-driven water splitting. This was achieved by annealing Nb2O5 under NH3 to form NbON nanosheets which were subsequently used as starting seeds for the simultaneous growth and self-assembly of PtPd NDs with the assistance of Pluronic F127. The water oxidation performance of PtPd/NbON was substantially superior to those of NbON and Nb2O5. This is ascribed to the combination of NbON with its great visible-light-harvesting properties and narrow band gap and the unique catalytic merits of PtPd NDs.
机译:为水分裂反应的显影高效光催化剂在燃料电池反应中至关重要。 在此,我们介绍了用于太阳能驱动的水分裂的PTPD纳秒(ND)装饰铌氧化物纳米液(PTPD / NBON)的单盆制备的容易的道路图。 这是通过在NH 3下退火NB2O5来实现的,以形成Nbon纳米片,随后用作Pluronic F127的辅助同时使用PTPD NDS的同时生长和自组装的起始种子。 PTPD / NBON的水氧化性能基本上优于NBON和NB2O5。 这与NBON的组合归因于其具有良好的可见光收获性能和窄带隙和PTPD NDS的独特催化优点。

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