化学
降级(电信)
异质结
电泳沉积
沉积(地质)
化学工程
反应速率常数
污染物
纳米技术
GSM演进的增强数据速率
光电子学
动力学
材料科学
有机化学
物理
涂层
古生物学
工程类
沉积物
生物
电信
量子力学
计算机科学
作者
Xinyu Zhang,Yawei Yang,Shujiang Ding,Wenxiu Que,Zhiping Zheng,Yaping Du
出处
期刊:Inorganic Chemistry
[American Chemical Society]
日期:2017-03-01
卷期号:56 (6): 3386-3393
被引量:52
标识
DOI:10.1021/acs.inorgchem.6b02914
摘要
High-quality three-dimensional (3D) hierarchical SnO2@MoS2 nanohybrids were successfully obtained via a facile but effective wet chemistry synthesis method. Meanwhile, the SnO2@MoS2 hybrid film was fabricated through an electrophoretic deposition method to promote photoelectrocatalytic (PEC) efficiency and solve the recovery problem. Compared with the pure SnO2 and MoS2 films, the SnO2@MoS2 heterostructures could decrease the rate of the photoelectron–hole pair's recombination, which resulted in the superior PEC pollutant degradation and water splitting activities. Meanwhile, the SnO2@MoS2 hybrid films with well-defined 3D hierarchical configurations have large surface areas, abundant active edge sites, and defects on the basal surfaces, which were also advantageous for the PEC activities (for pollutant degradation, apparent rate constant k = 5.91 h–1; for water splitting, onset potential = −0.05 V and current density = 10 mA/cm2). Therefore, the SnO2@MoS2 hybrid film proved to be a superior structure for PEC applications.
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