4.7 Article

Synthesis and photochemical performance of morphology-controlled CdS photocatalysts for hydrogen evolution under visible light

期刊

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY
卷 36, 期 7, 页码 4271-4279

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.ijhydene.2011.01.022

关键词

CdS; Controlled synthesis; Photocatalyst; Water splitting

资金

  1. National Natural Science Foundation of China [20973110]
  2. National Key Basic Research and Development Program [2009CB220000]
  3. National High Technology Research and Development Program of China [2009AA05Z117]

向作者/读者索取更多资源

Novel CdS nanomaterials were synthesized by a simple one-pot hydrothermal biomolecule-assisted method using glutathione (GSH) as the sulfur source and structure-directing reagent. Various morphologies of CdS photocatalysts, such as solid nanospheres (s-CdS), hollow nanospheres (h-CdS) and nanorods (r-CdS), were obtained by controlling only the hydrothermal temperatures. The X-ray diffraction patterns confirmed that all of the samples were typical hexagonal wurtzite CdS. It was found that the absorption edge of s-CdS was at 465 nm with a greater blue shift compared to that of h-CdS and r-CdS. The photocatalytic activity of s-CdS was superior to that of h-CdS and r-CdS under visible light. Photoluminescence measurements revealed their different photogenerated electron/hole recombination ability, which was in accordance with the order of s-CdS < h-CdS < r-CdS. The excellent photocatalytic activity of s-CdS was ascribed to the small sizes of sub-nanocrystallites, which make it easy for photoinduced electrons and holes on the solid sphere to migrate to the surface and react with water and the sacrificial agent quickly. It was crucial to control the temperature for preparing CdS photocatalysts via hydrothermal methods. The formation mechanism of different morphology might be due to complexation, S C bond rupture, spherical aggregation and Ostwald ripening processes. Copyright (C) 2011, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.

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