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首页> 外文期刊>Nanoscale >Exploring the effects of nanocrystal facet orientations in g-C3N4/BiOCl heterostructures on photocatalytic performance
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Exploring the effects of nanocrystal facet orientations in g-C3N4/BiOCl heterostructures on photocatalytic performance

机译:探索纳米晶体方面的影响方向在g-C3N4 / BiOCl异质结构光催化性能

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摘要

Effective separation and migration of photogenerated electron-hole pairs are two key factors to determine the performance of photocatalysts. It has been widely accepted that photocatalysts with heterojunctions usually exhibit excellent charge separation. However, the migration process of separated charges in the heterojunction structures has not been fully investigated. Herein, photocatalysts with heterojunctions are constructed by loading g-C3N4 nanoparticles onto BiOCl nanosheets with different exposed facets (BOC-001 and BOC-010). The g-C3N4 nanoparticles with decreasing size and increasing zeta potential could induce stronger coupling and scattering in the heterojunction. The relationship between the crystal facet orientation in the BiOCl nanosheets and charge separation/effective migration behaviours of the materials is investigated. The visible light photocatalytic activity of the composites is evaluated by methyl orange (MO) and phenol degradation experiments, and the results show that ngCN/BOC-010 composites exhibit higher photocatalytic performance than that of ng-CN/BOC-001 composites. Both photoelectrochemical and fluorescence emission measurements indicate that the different exposed facets in ng-CN/BiOCl composites could induce the migration of the photogenerated electrons in different ways, but do not significantly alter the separation efficiencies. The separated electrons in ngCN/BOC-010 undergo a shorter transport distance than that of ng-CN/BOC-001 to reach the surface reactive sites. The study may suggest that the crystal facet orientation in polar semiconductors is a critical factor for designing highly efficient heterojunction photocatalysts.
机译:有效的分离和迁移两个关键photogenerated电子空穴对因素决定的性能论文的。催化剂与垂直通常表现出优秀的电荷分离。迁移过程的分离的指控异质结结构尚未完全调查。垂直加载g-C3N4构造纳米粒子在BiOCl nanosheets不同的暴露面(中行- 001和中行- 010)。减少尺寸和g-C3N4纳米颗粒增加电动电势可能诱发更强耦合和异质结的散射。水晶方面之间的关系取向的BiOCl nanosheets和电荷分离/有效的迁移行为材料研究。复合材料的光催化活性评估通过甲基橙(MO)和苯酚降解实验,结果显示ngCN /中行- 010复合材料表现出高光催化性能比ng-CN /中行- 001复合材料。光电化学和荧光发射测量结果表明,不同的暴露在ng-CN / BiOCl复合材料可以诱导方面photogenerated电子的迁移不同的方式,但不会显著改变分离效率。电子ngCN /中行- 010接受更短运输距离比ng-CN /中行- 001达到表面反应性网站。表明,水晶面取向极性半导体是一个关键因素设计高效的异质结论文的。

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