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首页> 外文期刊>Applied Surface Science >Supporting carbon quantum dots on NH_2-MIL-125 for enhanced photocatalytic degradation of organic pollutants under a broad spectrum irradiation
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Supporting carbon quantum dots on NH_2-MIL-125 for enhanced photocatalytic degradation of organic pollutants under a broad spectrum irradiation

机译:NH_2-MIL-125上的支撑碳量子点在广谱辐射下增强有机污染物的光催化降解

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The rapid recombination of photoinduced electron-holes and the low utilization of solar energy have become two disadvantages limiting the performance of current photocatalysts. In this work, a novel composite photocatalyst, in which the carbon quantum dots (CQDs) were supported on the NH2-MIL-125 (a kind of metal-organic frameworks (MOFs)), was designed and constructed. The CQDs could not only serve as electron-acceptors for promoting the photoinduced charge separation in NH2-MIL-125, but also act as the spectrum converter (convert near-infrared light into visible light) to realize the enhanced light absorption by NH2-MIL-125. The NH2-MIL-125 supported CQDs (CQDs/NH2-MIL-125) displayed significantly enhanced photocatalytic activity compared with NH 2 -MIL-125 for Rhodamine B (RhB) degradation, regardless of the light source varied from the full-spectrum, visible light or even near-infrared light. Moreover, the photocatalytic efficiency of CQDs/NH2-MIL-125 was influenced by the CQDs content, and the composite with 1% CQDs loading exhibited the best performance. The excellent photocatalytic performance of CQDs/NH2-MIL-125 is attributed to the enhanced photoinduced charge separation and improved utilization efficiency of light energy. This work is expected to provide an attractive strategy for constructing high-efficiency photocatalyts towards environmental remediation.
机译:光致电子空穴的快速复合和太阳能的低利用已成为限制当前光催化剂性能的两个缺点。在这项工作中,设计并构造了一种新型复合光催化剂,其中碳量子点(CQD)负载在NH2-MIL-125(一种金属有机骨架(MOF))上。 CQD不仅可以用作促进NH2-MIL-125中光致电荷分离的电子受体,而且还可以用作光谱转换器(将近红外光转换为可见光)以实现NH2-MIL增强的光吸收-125。与NH 2 -MIL-125相比,NH2-MIL-125负载的CQD(CQDs / NH2-MIL-125)对若丹明B(RhB)的降解表现出显着增强的光催化活性,无论光源是从全光谱中变化的,可见光甚至是近红外光。此外,CQDs / NH2-MIL-125的光催化效率受CQDs含量的影响,CQDs含量为1%的复合材料表现出最好的性能。 CQDs / NH2-MIL-125的优异光催化性能归因于增强的光诱导电荷分离和提高的光能利用效率。预期这项工作将为构建用于环境修复的高效光催化剂提供有吸引力的策略。

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