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CdS-Nanoparticles-Decorated Perpendicular Hybrid of MoS2 and N-Doped Graphene Nanosheets for Omnidirectional Enhancement of Photocatalytic Hydrogen Evolution

机译:Cds-nanoparticles装饰MOS2和N掺杂石墨烯纳米晶片的垂直杂交,用于光催化氢进化的全向增强

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摘要

A new hierarchical nanoarchitecture with integration of multiple active materials has been developed for highly efficient hydrogen evolution reaction (HER), by decorating a perpendicular hybrid of MoS2 and N-doped graphene nanosheets with CdS nanoparticles. The unique architecture promoted light trapping and absorption for highly efficient light harvesting and photocarrier generation, and offered an unblocked electron transport pathway for rapid charge separation/transport to suppress charge recombination. Its high surface area and high density of active sites result in highly efficient utilization of photogenerated carriers for productive HER. Significantly, without using noble metals as co-catalysts, the photocatalysts demonstrated rapid HER rates as high as 5.01mmolh(-1)g(-1) under visible-light irradiation, which was approximately 25times that of pure CdS. The hydrogen production remained stable after a continued test for 30h, showing an exceedingly high performance and superior stability.
机译:通过装饰具有CDS纳米颗粒的MOS2和N掺杂石墨烯纳米片的垂直杂种,开发了一种具有多种活性材料的一体化多种活性材料的分层纳米建筑。独特的建筑促进了高效的光载波和光载体产生的光捕获和吸收,并提供了一种未阻止的电子传输通路,用于快速电荷分离/传输以抑制电荷重组。其高表面积和高密度的活性位点导致高效利用光生载体的生产力。显着地,在不使用贵金属作为助催化剂的情况下,光催化剂在可见光照射下表现出高达5.01mmolH(-1)G(-1)的速率,其约为纯Cd的约25倍。在继续测试30小时后,氢气产量保持稳定,显示出极高的性能和优异的稳定性。

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