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Preparation of the heterojunction catalyst N-doping carbon quantum dots/P25 and its visible light photocatalytic activity

机译:异质结催化剂N掺杂碳量子点/ P25的制备及其可见光催化活性

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摘要

N-doping carbon quantum dots were successfully loaded on P25 nanoparticles (denoted as N-CDs/P25) by facile hydrothermal process, and their morphology and chemical structure were systematically studied. The carrier of N-CDs can significantly broaden the photoresponse range of the P25 to the visible region, accelerate charge transportation and separation. Application of the N-CDs/P25 material for the photocatalytic decomposition of Rhodamine B (RhB) gave improved activity relative to P25. The best degradation activity obtained at 6mL N-CDs/P25 under visible light irradiation, which shows a 13.06 fold photocatalytic activity over P25. Radical trapping control experiment and Electron Paramagnetic Resonance (EPR) measurements have been applied to explore the photodegradation dynamic and visible-light driven degradation mechanism. This work provides new insights into the fabrication of N-doping carbon quantum dots/TiO2 composite and is promising to open new possibilities in the application of carbon-TiO2 composites as the photocatalysts in the environmental protection issues.
机译:通过简便的水热过程将N掺杂碳量子点成功负载在P25纳米颗粒上(称为N-CDs / P25),并对其形貌和化学结构进行了系统的研究。 N-CD的载体可以显着扩大P25的光响应范围至可见光区域,从而加速电荷的传输和分离。 N-CDs / P25材料在罗丹明B(RhB)的光催化分解中的应用相对于P25具有改进的活性。在可见光照射下,在6mL N-CDs / P25处获得的最佳降解活性是P25的13.06倍。自由基俘获控制实验和电子顺磁共振(EPR)测量已被用于探索光降解动力学和可见光驱动的降解机理。这项工作为N掺杂碳量子点/ TiO2复合材料的制造提供了新的见识,并有望为将碳-TiO2复合材料用作光催化剂在环境保护方面的应用开辟新的可能性。

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