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首页> 外文期刊>Chemical engineering journal >Construction of 3D hierarchical microarchitectures of Z-scheme UiO-66-(COOH)(2)/ZnIn2S4 hybrid decorated with non-noble MoS2 cocatalyst: A highly efficient photocatalyst for hydrogen evolution and Cr(VI) reduction
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Construction of 3D hierarchical microarchitectures of Z-scheme UiO-66-(COOH)(2)/ZnIn2S4 hybrid decorated with non-noble MoS2 cocatalyst: A highly efficient photocatalyst for hydrogen evolution and Cr(VI) reduction

机译:用非贵族MOS2 Cocatalyst装饰的Z-Scheme UIO-66-(COOH)(2)/ Znin2S4杂交体的3D层次微体建筑施工:氢气进化和Cr(VI)减少的高效光催化剂

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摘要

To solve the problem of energy shortage and environmental pollution, the construction of properly designed photocatalysts is a promising method. Here, UiO-66-(COOH)(2)/ZnIn2S4 Z-scheme photocatalyst decorated with MoS2 nanosheets was designed and constructed as a novel 3D hierarchical structure via hydrothermal methods. In this particular 3D hierarchical structure, the UiO-66-(COOH)(2) nanoparticles are decorated in the interweaving petal nanosheets of ZnIn2S4 microspheres, while the co-catalyst of MoS2 is folded at the edge of these interweaving petals. The excellent heterojunctions with highly exposed catalytic active sites are correspondingly built, and the close interfacial interaction between UiO-66-(COOH)(2), MoS2 and ZnIn2S4 create a stage for fast transfer of photogenerated electrons, which are both effective for the photocatalytic reaction process. Also, the Z-scheme charge-transfer process improves the oxidizability and reducibility between UiO-66-(COOH)(2) and ZnIn2S4. As a result, the optimized UiO-66-(COOH)(2)/MoS2/ZnIn2S4 photocatalyst exhibits excellent photocatalytic hydrogen production (18.794 mmol h(-1 )g(-1)) and reduction of Cr(VI) (0.06850 min(-1)) under simulated solar light irradiation, which are 15.3 and 6.7 times higher than that of bare ZnIn2S4, respectively, and also the prominent stability and excellent recyclability are obtained. This study provides new insights into the research on the Z-scheme system containing MOF components for growing energy and environmental demands.
机译:为解决能源短缺和环境污染问题,适当设计的光催化剂的构建是一个有希望的方法。这里,用MOS2纳米晶片装饰和构造的UIO-66-(CoOH)(2)/ Znin2S4 Z样品光催化剂通过水热方法设计并构造为新的3D层次结构。在该特定的3D层次结构中,UIO-66-(COOH)(2)纳米颗粒在Znin2S4微球的交织瓣纳米片中装饰,而MOS2的助催化剂在这些交织花瓣的边缘处折叠。相应地构建了具有高度暴露的催化活性位点的优异杂疾病,并且UIO-66-(COOH)(2),MOS2和Znin2S4之间的紧密界面相互作用为快速传递光催化的电子产生了一种阶段,这对光催化剂有效反应过程。此外,Z方案电荷转移过程改善了UIO-66-(COOH)(2)和Znin2S4之间的氧化性和再减少性。结果,优化的UIO-66-(COOH)(2)/ MOS2 / Znin2S4光催化剂表现出优异的光催化氢气产生(18.794mmol H(-1)g(-1))和Cr(VI)的还原(0.06850分钟) (-1))在模拟的太阳能光照射下,分别比裸Znin2S4高15.3和6.7倍,也获得了突出的稳定性和优异的可再循环性。本研究为Z-Scheme系统的研究提供了新的见解,该研究含有MOF组件的MOF组件,以增加能量和环境需求。

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