首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A CoP/CdS/WS2 p-n-n tandem heterostructure: a novel photocatalyst for hydrogen evolution without using sacrificial agents
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A CoP/CdS/WS2 p-n-n tandem heterostructure: a novel photocatalyst for hydrogen evolution without using sacrificial agents

机译:COP / CDS / WS2 P-N-N串联异质结构:一种用于氢逸出的新型光催化剂而不使用牺牲剂

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摘要

In this work, a photocatalyst with a built-in p-n-n tandem heterostructure is designed and fabricated by combining CdS with n-type WS2 nanosheets and p-type CoP nanoparticles. The p-n-n tandem heterostructure allows different favorable properties from each participating compound to be combined, prolonging the lifetimes of photogenerated electrons, providing surface redox sites and increasing the photostability. Photocatalytic hydrogen evolution activity of CoP/CdS/WS2 without using sacrificial agents is measured to be 9.16 mu mol g(-1) h(-1). Moreover, it can be used as a bifunctional photocatalyst for degrading pollutants and producing hydrogen at the same time (43.51 mu mol g(-1) h(-1)). This work opens a new way for designing efficient photocatalysts without using sacrificial agents and combining energy conversion with environmental remediation effectively.
机译:在这项工作中,通过将Cd与N型WS2纳米片和P型COP纳米颗粒组合来设计和制造具有内置P-N-N串联异质结构的光催化剂。 P-N-N串联异质结构允许组合各种参与化合物的不同良好性质,延长光生电子的寿命,提供表面氧化还原位点并增加光稳定性。 COP / Cds / WS2的光催化氢进化活性在不使用牺牲剂的情况下测量为9.16μmMolg(-1)H(-1)。 此外,它可以用作双官能光催化剂,用于降解污染物并同时生产氢(43.51μmmolg(-1)H(-1))。 这项工作开启了一种用于设计高效光催化剂的新方法,而无需使用牺牲剂并有效地将能量转换与环境修复结合起来。

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