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用于在可见光照射下增强光催化析氢和亚甲基蓝去除的WSSe纳米复合材料

WSSe Nanocomposites for Enhanced Photocatalytic Hydrogen Evolution and Methylene Blue Removal under Visible-Light Irradiation.

作者信息

Tien Tsung-Mo, Chung Yu-Jen, Huang Chen-Tang, Chen Edward L

机构信息

Coastal Water and Environment Center, College of Hydrosphere Science, National Kaohsiung University of Science and Technology, Kaohsiung City 81157, Taiwan.

Department of Marine Science, Republic of China Naval Academy, Kaohsiung 81300, Taiwan.

出版信息

Materials (Basel). 2022 Aug 16;15(16):5616. doi: 10.3390/ma15165616.

Abstract

In this study, a novel tungsten disulfide diselenide (WSSe) nanocomposite by a facile hydrothermal process with great capable photocatalytic efficiency for hydrogen evolution from water and organic compound removal was discussed. The WSSe nanocomposites form heterojunctions in order to inhibit the quick recombination rate of photo-induced electrons and holes. This is considered to be a useful method in order to enhance the capability of photocatalytic hydrogen production. The hydrogen production rate of the WSSe nanocomposites approaches 3647.4 μmol/g/h, which is 12 and 11 folds the rates of the bare WS and WSe, respectively. Moreover, the excellent photocatalytic performance for Methylene blue (MB) removal (88%) was 2.5 and 1.8 times higher than those of the bare WS and WSe, respectively. The great photocatalytic efficiency was owing to the capable electrons and holes separation of WSSe and the construction of the heterostructure, which possessed vigorous photocatalytic oxidation and reduction potentials. The novel one-dimensional structure of the WSSe heterojunction shortens the transport pathway of the photo-induced electrons and holes. It possesses the great capable photocatalytic efficiency of the hydrogen production and organic dye removal. This study offers an insight into the route of interfacial migration and separation for induced charge carriers in order to generate clean hydrogen energy and to solve the issue of environmental pollution.

摘要

在本研究中,讨论了一种通过简便水热法制备的新型二硫化钨二硒化物(WSSe)纳米复合材料,其具有高效的光催化产氢效率以及去除有机化合物的能力。WSSe纳米复合材料形成异质结以抑制光生电子和空穴的快速复合率。这被认为是提高光催化产氢能力的一种有效方法。WSSe纳米复合材料的产氢速率接近3647.4 μmol/g/h,分别是纯WS和WSe产氢速率的12倍和11倍。此外,其对亚甲基蓝(MB)的优异光催化去除性能(88%)分别比纯WS和WSe高2.5倍和1.8倍。这种高的光催化效率归因于WSSe中电子和空穴的有效分离以及异质结构的构建,其具有强的光催化氧化和还原电位。WSSe异质结的新型一维结构缩短了光生电子和空穴的传输路径。它具有高效的光催化产氢和去除有机染料的能力。本研究为诱导电荷载流子的界面迁移和分离途径提供了见解,以产生清洁氢能并解决环境污染问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/650f/9412401/74b434c80134/materials-15-05616-g001.jpg

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