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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >A PEDOT-coated quantum dot as efficient visible light harvester for photocatalytic hydrogen production
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A PEDOT-coated quantum dot as efficient visible light harvester for photocatalytic hydrogen production

机译:涂有PEDOT的量子点可作为光催化制氢的有效可见光收集器

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The photocatalytic electrode device comprised of Pt/TiO2/CdS/CdSe/PEDOT hybrid semiconductors exhibits stable and efficient hydrogen generation through photocatalytic water-splitting reactions. PEDOT polymer was electrochemically coated over a quantum dot-sensitized semiconductor and efficiently suppressed the back electron transfer from the semiconductor, thereby improving the photocurrent as compared to the uncoated control (13 vs 6 mA/cm(2), respectively). Impedance analysis revealed that the PEDOT-coated quantum dot electrode had reduced recombination resistance and increased electron lifetime values. Notably, the prepared electrode showed outstanding performance under visible-light irradiation in the absence of applied bias potential. Under this condition, the hybrid electrode structure generated hydrogen at a rate of 370 mu mol cm(-2) h(-1) with a sacrificial electrolyte. Furthermore, a quantum efficiency of 6.9% and turnover number of 2210 were achieved by the PEDOT-coated electrode. The photo-stability test revealed that the PEDOT polymer coated electrode showed longer stability compared to the uncoated electrode. The findings presented in this report highlight the advantages of designing and constructing the hybrid electrode structure and be applicable to other photocatalytic materials and photoelectrochemical reactions. (C) 2015 Elsevier B.V. All rights reserved.
机译:由Pt / TiO2 / CdS / CdSe / PEDOT杂化半导体组成的光催化电极装置通过光催化水分解反应表现出稳定而有效的氢生成。 PEDOT聚合物被电化学涂覆在量子点敏化的半导体上,并有效地抑制了从半导体的反电子转移,从而与未涂覆的对照组相比分别提高了光电流(分别为13 vs 6 mA / cm(2))。阻抗分析表明,涂覆PEDOT的量子点电极具有降低的复合电阻和增加的电子寿命值。值得注意的是,制备的电极在不施加偏压的情况下在可见光照射下表现出优异的性能。在这种条件下,混合电极结构与牺牲电解质以370μmol cm(-2)h(-1)的速率生成氢。此外,通过涂覆PEDOT的电极可实现6.9%的量子效率和2210的周转数。光稳定性测试表明,与未涂覆的电极相比,PEDOT聚合物涂覆的电极显示出更长的稳定性。本报告中提出的发现突出了设计和构建混合电极结构的优势,并适用于其他光催化材料和光电化学反应。 (C)2015 Elsevier B.V.保留所有权利。

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