Layer-controlled growth of MoS2 on self-assembled flower-like Bi2S3 for enhanced photocatalysis under visible light irradiation
Layer-controlled growth of MoS2 on self-assembled flower-like Bi2S3 for enhanced photocatalysis under visible light irradiation
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MoS2在自组装花状Bi2S3上的层控生长增强可见光照射下的光催化作用
DOI:
10.1038/am.2016.46
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发表时间:
2016-04
影响因子:
9.7
通讯作者:
Yu Han-Qing
中科院分区:
文献类型:
--
作者:
Long Lu-Lu;Chen Jie-Jie;Zhang Xing;Zhang Ai-Yong;Huang Yu-Xi;Rong Qing;Yu Han-Qing
Metal sulfide semiconductors, such as molybdenum disulfide (MoS 2) and bismuth trisulphide (Bi 2 S 3), are of considerable interest for their excellent applications in photocatalysis and in many other fields. However, the controllable synthesis of MoS 2/Bi 2 S 3 hybrid nanostructures remains a challenge. In this study, we report a unique sacrificial templating strategy for preparing layer-controlled MoS 2 on three-dimensional (3D) Bi 2 S 3 micro-flowers. For this approach, Bi 2 S 3 was utilized as a sacrificial template to regulate the ion exchange, and the dosage of molybdenum was adjusted to tune the dynamic formation, thus converting the MoS 2 nanosheets on the Bi 2 S 3 micro-flowers from monolayer to multilayer. Such a 3D flower-like hybrid nanostructure enables MoS 2/Bi 2 S 3 to exhibit adsorption-promoted photocatalysis under visible light irradiation, especially for the excellent photodegradation of low-concentration organic pollutants, for example, azo dye and atrazine. The observed superiority of the 3D MoS 2/Bi 2 S 3 was mainly attributed to the increased mass transfer, robust light-harvesting capacity, improved charge separation, lower oxygen-activation barrier and enhanced active oxygen yield. Our findings are of interest for the development of novel S-based photocatalysts and provide a new opportunity to efficiently remove low-concentration refractory pollutants.
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影响因子:
46.2
作者:
Xiaodong Zhang;Yi Xie
通讯作者:
Xiaodong Zhang;Yi Xie
影响因子:
17.1
作者:
Chang, Kun;Mei, Zongwei;Ye, Jinhua
通讯作者:
Ye, Jinhua
DOI:
10.1002/chin.201324188
发表时间:
2013-06
期刊:
ChemInform
影响因子:
--
作者:
S. Kershaw;A. Susha;A. Rogach
通讯作者:
S. Kershaw;A. Susha;A. Rogach
影响因子:
13.3
作者:
Zhou, Weijia;Yin, Zongyou;Zhang, Hua
通讯作者:
Zhang, Hua
影响因子:
15
作者:
Li, Yanguang;Wang, Hailiang;Dai, Hongjie
通讯作者:
Dai, Hongjie