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In2S3/CuS nanosheet composite: An excellent visible light photocatalyst for H-2 production from H2S

机译:IN2S3 / CUS NANOSHEAT复合材料:来自H2S的H-2生产优异的可见光光催化剂

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As hydrogen sulfide (H2S) is a toxic chemical emitted in large quantities from both natural sources and industrial processes, resource utilization of H2S has become a hotspot research in recent years. We report herein, synthesis and characterization of a highly active In2S3/CuS nanosheet composite photocatalyst via a facile one-pot solvothermal route. The as-obtained In2S3/CuS composite show a special hierarchical structure and remarkable visible light absorption ability with an absorption edge of 785 nm. Its remarkable light absorption ability enables it to fully absorb the visible light. The as-obtained In2S3/CuS composite exhibits a superior visible-light photocatalytic activity and long-term durability in H2S splitting. As a result, a maximum H-2 production rate of 14950 mol g(-1) h(-1) over In2S3/CuS composite has been achieved even without any noble metal co-catalysts, which is 404 and 87 fold higher than that of over bare beta-In2S3 and Cu9S5, respectively. The corresponding apparent quantum yield (AQY) of In2S3/CuS at 420 nm is 9.3%. The excellent photocatalytic activity depends on the chemical structure, phase, optical nature and folded nanosheet like geometry of In2S3/CuS composite, which facilitated electron transfer between interfaces of beta-In2S3 and CuS, and improved the separation of photo generated electron-hole pairs. Therefore, In2S3/CuS composite could serve as an efficient and practical visible light response photocatalyst for H-2 production from toxic and corrosive H2S.
机译:由于硫化氢(H2S)是自然来源和工业过程中大量发出的有毒化学品,H2S的资源利用已成为近年来的热点研究。我们在本文中报告,通过容易的单罐溶剂热途径合成和表征高活性IN2S3 / CUS纳米片复合光催化剂。获得的IN2S3 / CUS复合材料显示出特殊的层级结构和具有显着的可见光吸收能力,具有785nm的吸收边缘。其显着的光吸收能力使其能够完全吸收可见光。在H2S分裂中,AS获得的IN2S3 / CUS复合材料表现出优异的可见光光催化活性和长期耐久性。结果,即使没有任何贵金属辅助催化剂,也已经实现了14950mol g(-1)H(-1)H(-1)的最大H-2生产速率,这是404和87折叠的4S3 / CUS复合材料。在裸β-IN2S3和CU9S5中。 420nm处In2S3 / CU的相应表观量子产率(AQY)为9.3%。优异的光催化活性取决于化学结构,相位,光学性质和折叠纳米片,如IN2S3 / CUS复合材料的几何形状,其促进了Beta-In2S3和CU的界面之间的电子转移,并改善了光产生的电子孔对的分离。因此,IN2S3 / CUS复合材料可用作从毒性和腐蚀性H2S的H-2产生的高效且实用的可见光响应光催化剂。

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