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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Tuning piezoelectric field for optimizing the coupling effect of piezo-photocatalysis
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Tuning piezoelectric field for optimizing the coupling effect of piezo-photocatalysis

机译:调谐压电场,用于优化压电催化催化耦合效应

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摘要

In this work, the tuning of piezoelectric and energy-harvesting are realized in solvothermal synthesized Cl doped ZnO nanorods (NRs), which is designed to boost the coupling effect of piezo-photocatalysis for dye decomposition. For the optimal sample 5%-Cl-ZnO, the coupling constant is about 24.4 times greater than that of pure ZnO, which is benefited from the synergistic effect of the increased radial piezoelectric properties and the superiority of nanorods structure. Optimal 5%-Cl-ZnO NRs not only maintains high migration efficiency for photogenerated carriers in the axial direction, but also separate more thoroughly and transmit faster in the radial direction. This work clearly demonstrates a high correlation between piezoelectricity and coupling effect of piezo-photocatalysis, and provides a new strategy for optimizing the transport of photogenerated carriers in 1D photocatalyst.
机译:在这项工作中,在溶剂热合成的CL掺杂ZnO纳米棒(NRS)中实现了压电和能量收集的调谐,其设计用于提高压电催化分解的压电分解的耦合效果。 对于最佳样品5%-Cl-ZnO,耦合常数大于纯ZnO的约24.4倍,这受益于增加径向压电性能的协同效应和纳米棒结构的优越性。 最佳5%-CL-ZnO NRS不仅为光生载流子沿轴向保持高迁移效率,而且还在径向方向上更彻底地分离并更快地传输。 这项工作清楚地证明了压电 - 光催化的压电和耦合效果之间的高相关性,并提供了一种用于优化1D光催化剂中光发生载体传输的新策略。

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