2D/2D WO3/Ag:ZnIn2S4 Z型异质结复合物的构筑及可见光催化性能
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1.大连大学 环境与化学工程学院;2.沈阳化工大学 无机分子基辽宁省重点实验

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国家自然科学基金(51402198);辽宁省“兴辽英才计划”项目(XLYC2007166)


Construction of 2D/2D WO3/Ag:ZnIn2S4 Z-scheme heterojunction composites for visible light catalysis
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1.College of Environmental and Chemical Engineering,Dalian University;2.Key Laboratory of Inorganic Molecule-Based Chemistry of Liaoning Province,Shenyang University of Chemical Technology,Shenyang

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    摘要:

    构筑Z型异质结复合物是光催化领域解决电子-空穴对复合较快的常用方法,其独特的双光子体系能高效的提升光催化速率而备受关注。本文通过水热法原位构筑二维/二维(2D/2D)WO3/Ag:ZnIn2S4 Z型异质结复合物,并且利用透射电子显微镜(TEM)、X射线衍射(XRD)、X射线光电子能谱(XPS)、紫外-可见漫反射光谱(UV-Vis DRS)、光电化学(PEC)和荧光光谱(PL)对其微观形貌、物相结构、元素化学态和光电性能等进行表征分析,以及采用可见光(加λ>420 nm的滤光片)照射来评价2D/2D WO3/Ag:ZnIn2S4 Z型异质结复合物光解水制氢气和光降解甲基橙(MO)的催化性能。结果表明,在2D/2D WO3/Ag:ZnIn2S4 Z型异质结复合物中,随着Ag:ZnIn2S4的含量增加,光催化性能也显著增强。当Ag:ZnIn2S4的质量分数为35.0%时,复合物表现出最佳的制氢速率(158.93 μmol.g-1.h-1)与降解速率(0.18 min-1),这为基于WO3纳米片设计和构筑2D/2D Z型异质结复合物用于可见光催化制氢和污染物降解提供了新的见解。

    Abstract:

    The Z-Scheme heterojunction is extremely attractive in the field of photocatalysis to solve the electron-hole separation transport path because of its unique bi-photon system that can efficiently improve the photocatalytic rate. In this study, the hydrothermal method was used to in situ synthesize two-dimensional/two-dimensional (2D/2D) WO3/Ag:ZnIn2S4 Z-Scheme heterojunction composites. Meanwhile, the microstructure, phase structure, chemical environment and optoelectronic properties of 2D/2D WO3/Ag:ZnIn2S4 Z-Scheme heterojunction composites were characterized by transmission electron microscopy (TEM), X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), UV-visible diffuse reflection spectroscopy (UV-Vis DRS), photoelectrochemical (PEC), and photoluminescence (PL) spectra, respectively. Furthermore, under visible light irradiation (using a filter with λ>420 nm), the performance of 2D/2D WO3/Ag:ZnIn2S4 Z-Scheme heterojunction composites for hydrogen production and photodegradation of methyl orange (MO) was assessed. The results show that the photocatalytic performance is also significantly enhanced with the addition of Ag:ZnIn2S4 content, in the 2D/2D WO3/Ag:ZnIn2S4 Z-Scheme heterojunction composites. When the mass fraction of Ag:ZnIn2S4 was 35.0%, it showed the best hydrogen production rate (158.93 μmol.g-1.h-1) and degradation rate (0.18 min-1). This work provides new insights into design and construction of Z-scheme heterojunction based on WO3 nanosheets for visible light catalytic hydrogen production and pollutant degradation.

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顾登,明涛,张含烟,高雨,丁茯,徐振和,孙亚光.2D/2D WO3/Ag:ZnIn2S4 Z型异质结复合物的构筑及可见光催化性能[J].精细化工,2023,40(8):

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  • 收稿日期:2022-10-08
  • 最后修改日期:2022-12-19
  • 录用日期:2022-12-26
  • 在线发布日期: 2023-06-12
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