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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Photocatalytic Activity Suppression of Ag3PO4-Deposited Cu2O Octahedra and Rhombic Dodecahedra
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Photocatalytic Activity Suppression of Ag3PO4-Deposited Cu2O Octahedra and Rhombic Dodecahedra

机译:Photocatalytic活性抑制Ag3PO4沉积的Cu2o八面乳和菱形十二章

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摘要

Ag3PO4 nanoparticles were lightly deposited on Cu2O cubes, octahedra, and rhombic dodecahedra for facet dependent photocatalytic degradation of methyl orange. Cu2O cubes remain inactive after loading with Ag3PO4. Drastic photocatalytic activity suppression occurs for Ag3PO4-decorated Cu2O octahedra. Surprisingly, total deactivation results for Cu2O rhombic dodecahedra after Ag3PO4 deposition. Electron paramagnetic resonance spectra and electrochemical impendence measurements support the experimental observations. Interfacial Ag3PO4 lattice planes have been identified. A modified band diagram is constructed to understand photocatalytic activity decay or deactivation because of large interfacial band bending to create an unfavorable situation for charge carrier transport across the heterojunctions. This study further illustrates that photocatalytic suppression can be often observed in many semiconductor heterojunctions and multiple interfacial plane combinations mean that photocatalytic outcomes are unpredictable.
机译:在Cu2O立方体,八面体和菱形十二烷下轻轻沉积Ag3PO4纳米粒子,用于甲基橙的甲基依赖性光催化降解。用AG3PO4加载后,CU2O立方体仍然无效。 Ag3PO4装饰CU2O Octahedra发生急剧光催化活性抑制。令人惊讶的是,在Ag3PO4沉积后Cu2O菱形十二次乳腺癌的总停用结果。电子顺磁共振光谱和电化学封闭测量支持实验观察。已识别界面AG3PO4晶格平面。构建改进的带状带图以了解光催化活性衰减或失活,因为界面大的界面带弯曲,以造成杂交功能的电荷载波运输的不利情况。本研究进一步示出了光催化抑制可以在许多半导体异质结和多个界面平面的组合意味着光催化结果是不可预知的被经常观察到。

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