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Sunlight-Driven Hydrogen Production Using an Annular Flow Photoreactor and g-C3N4-Based Catalysts

机译:Sunlight-Driven氢生产使用环状流Photoreactor g-C3N4-Based催化剂

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摘要

Simple modifications of g-C3N4 (CN) have been studied to maximize hydrogen production under sunlight irradiation conditions. The relatively low surface area CN obtained was subjected to an exfoliation process which 1) increases available catalytic area and 2) modulates the semiconductor charge photohandling. MnO_x and metallic Pt, which can act as cocatalysts, were subsequently added on the surface of exfoliated or bulk counterparts, producing an active material suitable for sunlight applications. The resulting catalysts were fully characterized using a multi-technique approach. The combination of results indicates that optical properties are strongly defined by the delaminated process whereas the minority phases do not cause physico-chemical variation of the CN structure. Materials without Pt did not show activity under the investigated reaction conditions. In addition, the collaborative effect of the minority phases on the exfoliated CN was confirmed through a strict quantum efficiency calculation. Stability of the most active sample was similarly examined.
机译:简单的修改g-C3N4 (CN)研究了氢在最大化阳光照射的条件。受到一个获得低表面积CN剥离过程1)增加可用催化区和2)调节半导体photohandling收费。:可以作为随后被添加表面剥落或散装,产生一个活性物质适合阳光应用程序。催化剂完全使用特点multi-technique方法。结果表明,光学性质强烈的分层定义的过程而不会引起少数阶段CN结构的物理化学变化。材料没有Pt没有显示活动下研究了反应条件。的协同效应CN是少数阶段的剥落了确认通过严格的量子效率计算。是同样的检查。

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