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Enhanced photocatalytic performance of Cu2O/MoS2/ZnO composites on Cu mesh substrate for nitrogen reduction

机译:增强Cu2O / MOS2 / ZnO复合材料对Cu网状基材的光催化性能以进行氮气

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摘要

Cu2O nanoparticles and MoS2 nanoflowers decorated with ZnO nanospheres were successfully co-deposited on Cu mesh via a mild electrodeposition method to build a dual direct Z-scheme heterostructure. The prepared materials can effectively synthesize ammonia with N-2 and H2O in the liquid membrane reactor under simulated visible light. The results indicate that 3D nanomaterials exhibit better performance compared to a pure semiconductor due to the synergistic effect of enhanced visible light absorption, longer photogenerated carrier lifetime and the specific charge transfer path of dual direct Z-scheme structure. Meanwhile, the hydrophilicity of Cu2O/MoS2/ZnO rapidly makes the surface of the catalyst wet when it participates in the photo reaction, which promotes the contact between the reactant and exciton. This work proposes the electron transfer and possible reaction mechanism corresponding to the designed catalyst, which can provide a reference for other photocatalytic applications using a semiconductor heterojunction as a catalyst.
机译:通过温和的电沉积方法,成功地将氧化锌纳米球修饰的Cu2O纳米颗粒和MoS2纳米花共沉积在铜网格上,构建了双直接Z方案异质结构。所制备的材料在模拟可见光的液膜反应器中能有效地与N-2和H2O合成氨。结果表明,由于增强的可见光吸收、更长的光生载流子寿命和双直Z方案结构的特定电荷转移路径的协同效应,3D纳米材料比纯半导体表现出更好的性能。同时,Cu2O/MoS2/ZnO的亲水性在参与光反应时迅速使催化剂表面湿润,促进了反应物与激子的接触。本文提出了与所设计的催化剂相对应的电子转移和可能的反应机理,为其他以半导体异质结为催化剂的光催化应用提供了参考。

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