Construction of S-scheme Mn0.1Cd0.9S/WO3 1D/0D heterojunction assemblies for visible-light driven high-efficient H2 evolution

被引:11
作者
Sun, Yuanyuan [1 ]
Zhang, Minghao [2 ]
Mou, Xiaoming [2 ]
Song, Caixia [1 ]
Wang, Debao [2 ]
机构
[1] Qingdao Univ Sci & Technol, Coll Mat Sci & Engn, Qingdao 266042, Peoples R China
[2] Qingdao Univ Sci & Technol, Coll Chem & Mol Engn, Key Lab Inorg Syn Appl Chem, Qingdao 266042, Peoples R China
基金
中国国家自然科学基金;
关键词
Mn0.1Cd0.9S/WO3; S-scheme; 1D/0D heterojunction; Photocatalyst; H-2; production; Deep eutectic solvents; OXIDATION; CDS;
D O I
10.1016/j.jallcom.2022.167114
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Metal chalcogenides still suffer from the fast recombination of photoinduced charges and serious photo -corrosion when used as visible-light-responsive photocatalysts. The rationally designed photocatalysts should simultaneously possess high light-harvesting efficiency, fast charge separation, optimum redox ability and lasting stability, and this remains a big challenge. Herein, 0D WO3 nanoparticles (NPs) were prepared by using a deep eutectic solvents (DESs) pyrolysis method. And then 0D WO3 NPs coupled 1D Mn0.1Cd0.9S (MCS) nanorods were introduced to construct the S-scheme 1D/0D MCS/W heterojunction cauliflower-shaped assemblies, which were developed by using a simple hydrothermal method. X-ray photoelectron spectra disclosed the formation of the S-W-O bond, indicating strong interfacial interaction between MCS and WO3 at the heterojunction. The formed S-scheme 1D/0D MCS/W heterojunction cauli-flower-shaped assemblies and the construction of internal electric field not only enhance visible light ab-sorption, but also boost charge separation efficiency, and endow higher redox ability and long-term durability. Profiting from morphological and energy band structure synergy, the resultant MCS/W hetero-junction assemblies exhibited an enhanced photocatalytic H-2 generation rate of 21.25 mmol h(-1) g(-1), which was 25 times higher than that of pristine MCS. This work provides new deep insights into the rational construction of S-scheme heterojunction assemblies based on morphology and band structure design to boost the photocatalytic performance. (c) 2022 Elsevier B.V. All rights reserved.
引用
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页数:10
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