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首页> 外文期刊>ChemSusChem >Optimizing the Deposition of Hydrogen Evolution Sites on Suspended Semiconductor Particles using On-Line Photocatalytic Reforming of Aqueous Methanol Solutions
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Optimizing the Deposition of Hydrogen Evolution Sites on Suspended Semiconductor Particles using On-Line Photocatalytic Reforming of Aqueous Methanol Solutions

机译:利用甲醇溶液水溶液在线光催化重整优化悬浮半导体颗粒上的氢进化位点的沉积

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摘要

The deposition of hydrogen evolution sites on photocatalysts is a crucial step in the multistep process of synthesizing a catalyst that is active for overall photocatalytic water splitting. An alternative approach to conventional photodeposition was developed, applying the photocatalytic reforming of aqueous methanol solutions to deposit metal particles on semiconductor materials such as Ga2O3 and (Ga0.6Zn0.4)(N0.6O0.4). The method allows optimizing the loading of the co-catalysts based on the stepwise addition of their precursors and the continuous online monitoring of the evolved hydrogen. Moreover, a synergetic effect between different co-catalysts can be directly established.
机译:光催化剂上的氢进化位点的沉积是合成催化剂的MultiSep工艺中的关键步骤,该方法是活性用于总光催化水分解的催化剂。 开发了一种替代的常规光滤膜的方法,施加光催化重整甲醇溶液的光催化重整,以将金属颗粒沉积在半导体材料上,例如Ga2O3和(Ga0.6Zn0.4)(NO.6O0.4)。 该方法允许基于其前体的逐步添加和进化氢的连续在线监测来优化助催化剂的负载。 此外,可以直接建立不同助催化剂之间的协同效应。

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