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Enhanced hydrogen production over CdSe QD/ZTP composite under visible light irradiation without using co-catalyst

机译:在不使用助催化剂的情况下,在可见光照射下,与CdSe QD / ZTP复合材料相比,提高了制氢效率

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摘要

A series of CdSe quantum dot (QD)/zirconium titanium phosphate (ZTP) was synthesized by solvothermal method using ethylene diamine by varying Cd to Se ratio from 1:1 to 1:4 and examined as robust catalysts for hydrogen evolution under visible light irradiation without using any co-catalyst. Extensively, the structural, optical, morphological, elemental and photoresponse spectra measurement of the composite system was studied. The catalytic activity of the materials was correlated with photoluminescence spectra, band gap energy and the photosensitization effect of CdSe quantum dot. Though neat CdSe quantum dot and zirconium titanium phosphate (ZTP) exhibited photocatalytic hydrogen evolution, the composite material showed remarkable high activity. Among these, lCdSe quantum dot/zirconium titanium phosphate (ZTP) composite showed the highest hydrogen production (905.4 nmol) within 3h which is consistent with low photo-luminescence (PL) intensity, wide band gap energy and the photosensitization effect of CdSe quantum dot.
机译:通过乙二胺的溶剂热法,将Cd与Se的比例从1:1改变为1:4,合成了一系列的CdSe量子点(QD)/锆钛酸钛(ZTP),并作为可见光照射下氢释放的可靠催化剂不使用任何助催化剂。广泛地研究了复合系统的结构,光学,形态,元素和光响应光谱测量。材料的催化活性与光致发光光谱,带隙能量和CdSe量子点的光敏效应有关。尽管纯净的CdSe量子点和磷酸锆钛(ZTP)表现出光催化氢的释放,但复合材料却显示出显着的高活性。其中,lCdSe量子点/磷酸锆钛(ZTP)复合材料在3h内显示出最高的氢产生(905.4 nmol),这与低的光致发光(PL)强度,宽带隙能量以及CdSe量子点的光敏效应相一致。 。

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