【2h】

Synthesizing CuO/CeO

机译:synthesizing Cu O/CEO

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摘要

The construction of heterostructured photocatalyst with an appropriate energy band structure will help realize highly efficient photo-excited charge separation. In this study, ternary CuO/CeO2/ZnO nano-particle (NP) composites were synthesized by a facile two-step sol-gel method, which exhibit significantly enhanced photocatalytic degradation performance for various organic pollutants under UV and visible light excitation. The photo-responses to both UV and visible light, as well as the visible light absorption and utilization rates of ZnO are found to be synergistically intensified by CeO2 and CuO co-coupling. The first-order kinetic constants (K) of 3%CuO/CeO2/ZnO for methylene blue (MB) degradation are ~3.9, ~4.1 and ~4.8 times higher than ZnO under UV light, visible light and simulated sunlight illumination, respectively. The roles of CuO and CeO2 in optical properties and photo-degradation under UV and visible light were explored. Besides, the photogenic holes (h+) of ZnO, CeO2, and the produced hydroxyl radicals (·OH) are proved to be the main active species under UV light. Dissimilarly, under visible light, the superoxide radicals (·O2−) formed by the reactions between oxygen molecules and the photo-generated electrons (e−) of CuO moving towards the catalysts surface are also found to be important for promoting dye decomposition. The improved photo-responses, the well-matched band structure that facilitates charge transfer processes, and the highly efficient utilization of the photo-excited carriers of the ternary nano-heterostructure are suggested to be the key factors for the remarkable enhancement of photocatalytic performance of ZnO nano-photocatalyst. This work offers a low-cost strategy to acquire highly active UV and visible light-driven photocatalyst.
机译:具有适当能带结构的异质阴性光催化剂的构建将有助于实现高效的光兴奋剂分离。在该研究中,通过容易的两步溶胶 - 凝胶法合成了三元CuO / CeO2 / ZnO纳米颗粒(NP)复合材料,其在UV和可见光激发下表现出各种有机污染物的显着增强的光催化降解性能。发现对UV和可见光的照片响应,以及ZnO的可见光吸收和利用率,通过CEO2和CUO共偶联协同增强。亚甲基蓝(MB)降解3%CuO / CeO 2 / ZnO的一阶动力学常数(K)分别在紫外线光,可见光和模拟阳光照射下高于ZnO的3.9%,〜4.1和〜4.8倍。 CuO和CeO2在光学性质和光降解下的作用和可见光下的光学性质和光降解的作用。此外,证明了ZnO,CeO 2和所生产的羟基(·OH)的光孔(H +)是紫外线下的主要活性物质。在可见光下,在可见光下,也发现通过氧分子与CuO的CUO的反应形成的超氧化物自由基(·O2-),对促进染料分解来说是重要的。改进的照片响应,促进电荷转移过程的良好匹配的带结构,以及三元纳米异质结构的光兴奋载体的高效利用率被认为是显着增强光催化性能的关键因素ZnO纳米光催化剂。这项工作提供了低成本的策略来获得高活性UV和可见光触发光催化剂。

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