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Synthesis, growth mechanism and photocatalytic H2 evolution of CdS/CuS composite via hydrothermal method

机译:水热法制备CdS / CuS复合材料的合成,生长机理和光催化H2的生成

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In recent years, visible light-driven photocatalysts used for confronting energy shortages and environmental pollution have drawn much attention. CdS is regarded as an excellent photoelectric semiconductor for photocatalysis, but photocorrosion and low photocatalytic activity limit its practical application. In order to improve the photocatalytic performance of CdS, we synthesized a II-type CdS/CuS composite via a hydrothermal method in one step. CdS, CuS and the CdS/CuS composite have flower-like structures according to FESEM results. XRD and EDS results confirm that the composite is composed of CdS and CuS, indicating that we have successfully synthesized the CdS/CuS composite. UV-Vis and PL results show that the formation of heterojunction structures with CuS can be used to control the optical properties of CdS. H _(2) evolution results show that the CdS/CuS composite generates H _(2) at a rate of 295 μmol g ~(?1) h ~(?1) , which is higher than that of CdS.
机译:近年来,用于解决能源短缺和环境污染的可见光驱动光催化剂备受关注。 CdS被认为是光催化的优良光电半导体,但是光腐蚀和低光催化活性限制了其实际应用。为了提高CdS的光催化性能,我们一步一步通过水热法合成了II型CdS / CuS复合材料。根据FESEM结果,CdS,CuS和CdS / CuS复合材料具有花状结构。 XRD和EDS结果证实该复合材料由CdS和CuS组成,表明我们已经成功地合成了CdS / CuS复合材料。 UV-Vis和PL结果表明,CuS异质结结构的形成可用于控制CdS的光学性质。 H _(2)演化结果表明,CdS / CuS复合材料以295μmolg〜(?1)h〜(?1)的速率生成H _(2),高于CdS。

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