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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Synergistic effect of photocatalysis and thermocatalysis for selective oxidation of aromatic alcohols to aromatic aldehydes using Zn3In2S6@ZnO composite
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Synergistic effect of photocatalysis and thermocatalysis for selective oxidation of aromatic alcohols to aromatic aldehydes using Zn3In2S6@ZnO composite

机译:光催化和热常数的协同作用,用ZN3IN2S6使用Zn3In2S6芳香醇选择性氧化芳香族醛

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摘要

Selective oxidation of aromatic alcohols to corresponding carbonyl compounds under mild conditions has a promising prospect in industry. In the paper, we successfully prepared a new mode of photothermocatalyst, Zn3In2S6@ZnO composite, which shows dramatically enhanced activity for selective oxidation of benzyl alcohol to benzaldehyde compared with single Zn3In2S6 and ZnO under visible light illumination. The enhancement is due to a synergistic effect of low-temperature thermocatalysis on ZnO and photo catalysis on Zn3In2S6. ZnO could weaken bonds of the C-H-alpha and the O-H. Then the reactive species (O-center dot(2)- and h+) generated on Zn3In2S6 could be easy for selective oxidation of benzyl alcohol to produce benzaldehyde. The photoelectrochemical and photoluminescence (PL) results and a series of control experiments (e.g. reaction temperature and radical scavenger) prove this synergistic effect and proposed mechanism. Moreover, the stable performance and high activity of Zn3In2S6@ZnO for other aromatic alcohols indicate its applicable potential. This study provides a promising way to combine photocatalysis and thermocatalysis for the design of novel and efficient visible-light-driven catalyst for selective oxidation of aromatic alcohols or other organics under mild reaction conditions. (C) 2017 Elsevier B.V. All rights reserved.
机译:在温和条件下对相应的羰基化合物选择性氧化在温和条件下具有很有希望的工业前景。在本文中,我们成功地制备了一种新的光热催化剂Zn3In2S6 @ ZnO复合材料,其显示出与苯甲醛的选择性氧化与苯甲醛的选择性氧化,与单一Zn3In2S6和ZnO在可见光照射下。增强是由于ZnO 2 S6对ZnO和照片催化的协同效应。 ZnO可以削弱C-H-α和O-H的键。然后在Zn3In2S6上产生的反应性物质(O-Center Dot(2) - 和H +)可以容易地用于选择性氧化苄醇以产生苯甲醛。光电化学和光致发光(PL)结果和一系列对照实验(例如,反应温度和自由基清除剂)证明了这种协同效应和提出的机制。此外,对于其他芳族醇的Zn3In2S6 @ ZnO的稳定性能和高活性表明其适用潜力。本研究提供了将光催化和热分析结合在轻度反应条件下为芳族醇或其他有机物选择性氧化设计的光催化和热催化的有希望的方法。 (c)2017 Elsevier B.v.保留所有权利。

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