首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Constructing a system for effective utilization of photogenerated electrons and holes: Photocatalytic selective transformation of aromatic alcohols to aromatic aldehydes and hydrogen evolution over Zn3In2S6 photocatalysts
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Constructing a system for effective utilization of photogenerated electrons and holes: Photocatalytic selective transformation of aromatic alcohols to aromatic aldehydes and hydrogen evolution over Zn3In2S6 photocatalysts

机译:构建用于有效利用光静电电子和孔的系统:在Zn3In2S6光催化剂上的芳香醇对芳香醇的光催化选择性转化和Zn3In2S6光催化剂

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摘要

In a reaction system, the simultaneously efficient utilization of photogenerated electrons and holes to realize the photocatalytic selective redox reactions of organics has been a hot topic. In this paper, the Zn3In2S6 samples were synthesized via a simple solvothermal method with different solvents, which could make full use of photo generated electrons and holes to achieve the photocatalytic selective transformation of aromatic alcohols to aromatic aldehydes and hydrogen evolution under mild conditions. The results show that the Zn3In2S6 synthesized with water (Zn3In2S6-W) exhibits the highest photocatalytic performance among the selected samples, with which the yields of benzaldehyde and hydrogen reach up to 732 and 708.8 pmol under light irradiation (lambda = 380 nm) for 4 h, respectively. The molar ratios between aldehydes and hydrogen are close to 1: 1. The apparent quantum efficiency is about 6.48% for wavelength lambda = 380 10 nm over Zn3In2S6-W sample. A possible reaction mechanism for the photocatalytic selective transformation of benzyl alcohol to benzaldehyde and hydrogen evolution under light irradiation is proposed. This work highlights that a reaction system is developed to effectively make use of the photogenerated electrons and holes for selective transformation of aromatic alcohols to aromatic aldehydes and hydrogen evolution over Zn3In2S6 photocatalysts under mild conditions.
机译:在反应体系中,同时有效地利用光静电的电子和孔来实现有机物的光催化选择性氧化还原反应是一个热门话题。在本文中,通过具有不同溶剂的简单溶剂热法合成Zn3In2S6样品,其可以充分利用光催化的电子和孔,以在温和条件下实现芳族醇的光催化选择性转化芳族醇和氢气逸出。结果表明,用水(Zn3In2S6-W)合成的Zn3In2S6在光辐射下表现出最高的光催化性能,其中苯甲醛和氢气的产量达到高达732和708.8pmol(Lambda& = 380nm)分别为4小时。醛与氢气之间的摩尔比接近1:1。在Zn 3汀2S6-W上的波长λ= 38010nm的表观量子效率约为6.48%。提出了一种可能的反应机理,用于在光照射下对苯甲酸苄醇的光催化选择性转化与苯甲醛和氢逸出。该工作凸显了反应系统,以有效地利用光生电子和孔,以便在温和条件下通过Zn3In2S6光催化剂在芳族醛和氢进化中选择性转化。

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