4.7 Article

Composite Tin and Zinc oxide nanocrystalline particles for enhanced charge separation in sensitized degradation of dyes

期刊

CHEMOSPHERE
卷 49, 期 4, 页码 439-445

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PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/S0045-6535(02)00306-5

关键词

charge separation; sensitized degradation; tin oxide; zinc oxide

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Composite ZnO/SnO2 catalyst has been studied for the sensitized degradation of dyes e.g. Eosin Y (2', 4', 5',7'- tetrabromofluorescein disodium salt) in relation to efficient charge separation properties of the catalyst. Improved photocatalytic activity was observed in the case of ZnO/SnO2 composite catalyst compared to the catalytic activity of ZnO, SnO2 or TiO2 powder, The suppression of charge recombination in the composite ZnO/SnO2 catalyst led to higher catalytic activity for the degradation of Eosin Y. Degradation of Eosin follows concomitant formation of CO2 and formation of CO2 followed a pseudo-first-order rate. Photo electrochemical cells constructed using SnO2, ZnO, ZnO/SnO2 sensitized with Eosin Y showed V-oc of 175, 306, 512 mV/cm(2) and I-sc of 50, 70, 200 muA/cm(2) respectively. A higher irreversible degradation of Eosin Y and higher V-oc observed on composite ZnO/SnO2 than ZnO and SnO2 separately can be considered as a proof of enhanced charge separation of ZnO/SnO2 catalyst. Eosin Y showed a higher emission decreases on ZnO/SnO2 composite than on individual ZnO, SnO2 or TiO2 indicating dominance of the charge injection process. Photoinjected electrons are tunneled from ZnO to SnO2 particles accumulating injected electrons in the conduction bands allowing wider separation of excited carriers. (C) 2002 Elsevier Science Ltd. All rights reserved.

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