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Carbon Quantum Dots Modified BiOCl Ultrathin Nanosheets with Enhanced Molecular Oxygen Activation Ability for Broad Spectrum Photocatalytic Properties and Mechanism Insight

机译:碳量子点修饰的BiOCl超薄纳米片具有增强的分子氧活化能力,可用于广谱光催化性质和机理研究

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In this paper, carbon quantum dots (CQDs) modified BiOCl ultrathin nanosheets photocatalyst was synthesized via a facile solvothermal method. The structures, morphologies, optical properties, and photocatalytic properties were investigated in detail. The photo catalytic activity of the obtained CQDs modified BiOCl ultrathin nanosheets photocatalyst was evaluated by the degradation of bisphenol A (BPA) and rhodamine B (RhB) under ultraviolet, visible, and nearinfrared light irradiation. The CQDs/BiOCl materials exhibited significantly enhanced photocatalytic performance as compared with pure BiOCl and the S wt % CQDs/BiOCl materials displayed the best performance, which showed a broad spectrum of photocatalytic degradation activity. The main active species were determined to be hole and O-2(center dot-) under visible light irradiation by electron spin resonance (ESR) analysis, XPS valence spectra, and free radicals trapping experiments. The crucial role of CQDs for the improved photocatalytic activity was mainly attributed to the superior electron transfer ability, enhanced light harvesting, and boosted catalytic active sites.
机译:本文采用一种简便的溶剂热法合成了碳量子点(CQDs)修饰的BiOCl超薄纳米片光催化剂。详细研究了其结构,形态,光学性质和光催化性质。通过双酚A(BPA)和若丹明B(RhB)在紫外,可见光和近红外光照射下的降解来评估获得的CQDs修饰的BiOCl超薄纳米片光催化剂的光催化活性。与纯BiOCl相比,CQDs / BiOCl材料表现出显着增强的光催化性能,并且S wt%CQDs / BiOCl材料显示出最佳性能,其表现出广谱的光催化降解活性。通过电子自旋共振(ESR)分析,XPS价谱和自由基捕获实验,确定了可见光照射下的主要活性物质为空穴和O-2(中心点)。 CQD对改善光催化活性的关键作用主要归因于优异的电子转移能力,增强的光收集能力和增强的催化活性位。

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