Constructing ZnIn2S4@WO3•H2O Z-type heterojunction to boost photocatalytic efficiency under visible-light irradiation

被引:4
作者
Ma, Ligang [1 ]
Yang, Yuqing [2 ]
Zhu, Tianyu [1 ]
Ding, Yihuan [1 ]
Lin, Chao [1 ]
Xu, Le [2 ]
Ai, Xiaoqian [2 ]
机构
[1] Nanjing Xiaozhuang Univ, Sch Elect Engn, Nanjing 211171, Peoples R China
[2] Jiangsu Second Normal Univ, Sch Phys & Elect Informat, Nanjing 210013, Peoples R China
基金
中国国家自然科学基金;
关键词
Z-type heterojunction; Photodegradation; Z-SCHEME PHOTOCATALYST; HYDROGEN-PRODUCTION; CHARGE-TRANSFER; HETEROSTRUCTURE; ZNIN2S4; ENERGY; BOND; CU;
D O I
10.1016/j.mtcomm.2024.110009
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this paper, hexagonal ZnIn2S4 2 S 4 nanoflowers were grown in situ on tetragonal WO3 center dot H2O 3 center dot H 2 O nanosheets, yielding a compact ZnIn2S4@WO3 center dot H2O 2 S 4 @WO 3 center dot H 2 O (ZIS@WO) core-shell heterojunction. The formation of the ZIS@WO heterojunction was optimized by meticulously adjusting the quantity of WO3 center dot H2O 3 center dot H 2 O nanosheets incorporated. The crystal structure and microstructure of ZIS@WO were comprehensively examined using XRD, TEM and EDS analyses. The photocatalytic properties of ZIS@WO heterojunctions were evaluated through the degradation of organic pollutants under visible light irradiation. The results demonstrated a marked enhancement in photocatalytic efficiency for the ZIS@WO heterojunction. Further investigation into the separation and transport of photogenerated carriers were performed using PL spectroscopy and photoelectrochemical measurement. Compared to the individual components of ZnIn2S4 2 S 4 nanoflowers and WO3 center dot H2O 3 center dot H 2 O nanosheets, the ZIS@WO heterojunction creates an internal electric field at the interface, along with a compact core-shell configuration. This internal electric field, in conjunction with the band structure of the heterojunction, effectively accelerates the separation of photo- generated electrons and holes. Additionally, a comprehensive analysis of the photocatalytic degradation mechanisms were presented, elucidating the intricate processes.
引用
收藏
页数:11
相关论文
共 59 条
[21]   Oxalic acid mediated synthesis of WO3•H2O nanoplates and self-assembled nanoflowers under mild conditions [J].
Li, Linzhi ;
Zhao, Jingzhe ;
Wang, Yi ;
Li, Yunling ;
Ma, Dechong ;
Zhao, Yan ;
Hou, Shengnan ;
Hao, Xinli .
JOURNAL OF SOLID STATE CHEMISTRY, 2011, 184 (07) :1661-1665
[22]   A review of material aspects in developing direct Z-scheme photocatalysts [J].
Li, Xuan ;
Garlisi, Corrado ;
Guan, Qiangshun ;
Anwer, Shoaib ;
Al-Ali, Khalid ;
Palmisano, Giovanni ;
Zheng, Lianxi .
MATERIALS TODAY, 2021, 47 :75-107
[23]   Constructing Z-scheme 1D/2D heterojunction of ZnIn2S4 nanosheets decorated WO3 nanorods to enhance Cr(VI) photocatalytic reduction and rhodamine B degradation [J].
Lian, Xinyi ;
Huang, Zongyi ;
Zhang, Yuqi ;
Chen, Zhou ;
Meidl, Peter ;
Yi, Xiaodong ;
Xu, Baile .
CHEMOSPHERE, 2023, 313
[24]   Elegant Z-scheme-dictated g-C3N4 enwrapped WO3 superstructures: a multifarious platform for versatile photoredox catalysis [J].
Liang, Zhi-Yu ;
Wei, Jin-Xin ;
Wang, Xiu ;
Yu, Yan ;
Xiao, Fang-Xing .
JOURNAL OF MATERIALS CHEMISTRY A, 2017, 5 (30) :15601-15612
[25]   Photoredox dual reaction for selective alcohol oxidation and hydrogen evolution over nickel surface-modified ZnIn2S4 [J].
Lin, Qiong ;
Li, Yue-Hua ;
Qi, Ming-Yu ;
Li, Jing-Yu ;
Tang, Zi-Rong ;
Anpo, Masakazu ;
Yamada, Yoichi M. A. ;
Xu, Yi-Jun .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2020, 271
[26]   Pd Nanosheet-Decorated 2D/2D g-C3N4/WO3•H2O S-Scheme Photocatalyst for High Selective Photoreduction of CO2 to CO [J].
Liu, Qi ;
Zhao, Xiaoxue ;
Song, Xianghai ;
Liu, Xin ;
Zhou, Weiqiang ;
Wang, Huiqin ;
Huo, Pengwei .
INORGANIC CHEMISTRY, 2022, 61 (09) :4171-4183
[27]   Critical issues of energy efficient and new energy vehicles development in China [J].
Liu, Zongwei ;
Hao, Han ;
Cheng, Xiang ;
Zhao, Fuquan .
ENERGY POLICY, 2018, 115 :92-97
[28]   Highly efficient photocatalytic water splitting utilizing a WO3-x/ZnIn2S4 ultrathin nanosheet Z-scheme catalyst [J].
Luo, Dian ;
Peng, Lei ;
Wang, Yang ;
Lu, Xiangyu ;
Yang, Cheng ;
Xu, Xinsheng ;
Huang, Yucheng ;
Ni, Yonghong .
JOURNAL OF MATERIALS CHEMISTRY A, 2021, 9 (02) :908-914
[29]   Photocatalyst degradation of perfluorooctanoic acid in water: Mechanisms, approaches, and perspectives [J].
Luo, Jiaqin ;
Li, Wei ;
Yin, Renli ;
Liu, Qian ;
Xin, Xiaodong ;
Yang, Lihui ;
He, Kuanchang ;
Ma, Dongmei ;
Lv, Sihao ;
Xing, Defeng .
SEPARATION AND PURIFICATION TECHNOLOGY, 2024, 338
[30]   Z-Scheme heterojunction WO3/ZnIn2S4 solar absorber for wastewater remediation [J].
Lv, Xinbo ;
Liang, Ying ;
Jiang, Xin ;
Sun, Tong ;
Yang, Huawei ;
Bai, Liangjiu ;
Wei, Donglei ;
Wang, Wenxiang ;
Ji, Chunnuan ;
Yang, Lixia .
CERAMICS INTERNATIONAL, 2024, 50 (06) :9489-9498