The multicomponent heterostructure flower spherical Ce-MOF/CdIn2S4/CdS for ciprofloxacin photodegradation via effective electron transfer

IF 3.2 3区 化学 Q2 CHEMISTRY, INORGANIC & NUCLEAR
Hong Zheng , Fengyan Ma , Meihua Ling , Ziqi Yang , Ran Ji , Yan Jiang , Li Li , Wenzhi Zhang
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引用次数: 0

Abstract

The charge separation efficiency and photocatalytic performance can be effectively improved by constructing heterojunction between an inorganic semiconductor and a metal-organic framework. Consequently, in this paper, Ce-MOF synthesized in a water bath was used as the precursor, and Ce-MOF/CdIn2S4/CdS multicomponent heterojunction composites were successfully prepared by microwave-assisted hydrothermal method. The rod-like Ce-MOF interspersed with CdIn2S4/CdS composite material with spherical morphology formed by CdIn2S4 nanosheets loaded around the center spherical CdS. Meanwhile, in ciprofloxacin (CIP) degradation experiments, the photocatalytic efficiency of 10 % Ce-MOF/CdIn2S4/CdS for CIP reached 76.7 % within 120 min of full-spectrum light irradiation; the corresponding kinetic rate constant was 0.0089 min−1. Its value was 12.7, 2.6, 2.6, 1.5, 1.4, 1.7, and 1.2 times higher than those of Ce-MOF, CdIn2S4, CdS, CdIn2S4/CdS, 5 % Ce-MOF/CdIn2S4/CdS, 20 % Ce-MOF/CdIn2S4/CdS, and 40 % Ce-MOF/CdIn2S4/CdS, respectively. The improved photocatalytic activity of 10 % Ce-MOF/CdIn2S4/CdS composite toward CIP is attributed to the synergistic effect between the unique Ce-MOF structure and multicomponent heterojunction. It not only promotes the tunable bandgap characteristics of the composite but also greatly prolongs the lifetime of photogenerated electrons (e) and holes (h+), thereby improving the utilization efficiency of photogenerated carriers and enhancing the electron transfer efficiency at the interface. This speculation can be directly confirmed by photoelectric chemical experiments. The multicomponent heterojunction existed in photocatalyst system can be speculated by combined with active species capture experiment and energy band structure, which has a prominent application prospect in the treatment of antibiotic wastewater.

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来源期刊
Journal of Solid State Chemistry
Journal of Solid State Chemistry 化学-无机化学与核化学
CiteScore
6.00
自引率
9.10%
发文量
848
审稿时长
25 days
期刊介绍: Covering major developments in the field of solid state chemistry and related areas such as ceramics and amorphous materials, the Journal of Solid State Chemistry features studies of chemical, structural, thermodynamic, electronic, magnetic, and optical properties and processes in solids.
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