Study on micro-nanocrystalline structure control and performance of ZnWO4 photocatalysts

被引:32
作者
Yan, Wen [1 ]
Liu, Xiangchun [1 ]
Hou, Shan [1 ]
Wang, Xiao [1 ]
机构
[1] Xian Univ Sci & Technol, Coll Mat Sci & Engn, Xian 710054, Shaanxi, Peoples R China
基金
中国国家自然科学基金;
关键词
001 ACTIVE FACETS; METHYLENE-BLUE; BAND-STRUCTURE; LIGHT; CARBON; WATER; DEGRADATION; FABRICATION; MORPHOLOGY; CONVERSION;
D O I
10.1039/c8cy02343c
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
ZnWO4 micro/nanocrystals with different sizes and well-developed crystals were synthesized by the molten salt method at low temperature. The crystal structure and growth morphology of the ZnWO4 crystals were characterized and the crystalline and band structure of ZnWO4 was simulated using Materials Studio software to reveal the relationship between crystal structure, surface morphology and properties. The results show that the ZnWO4 single crystal can be obtained at 500 degrees C for 12 h. The photocatalytic activity of the nanocrystalline ZnWO4 crystals prepared at different calcining times is decreased in the order 12 h > 24 h > 6 h > 0 h and the fluorescence emission intensity of the ZnWO4 crystals prepared at 500 degrees C for 24 h exhibited strong photoluminescence properties. The photocatalytic and photoluminescence properties of the ZnWO4 crystals were closely related to the crystal structure, micromorphology and crystal size. Based on the theoretical calculation of the energy band structure, the photoexcited electrons transmitted from the O 2p orbitals at the top of the VB to the empty W 5d orbitals at the bottom of the CB and the larger photoelectric transmission rate can inhibit the recombination of electron-hole pairs and promote the photocatalytic reaction. In contrast, the binding and complexation of carriers contributed to the manifestation of photoluminescence performance.
引用
收藏
页码:1141 / 1153
页数:13
相关论文
共 50 条
[31]   Versatile Nanostructures of ZnWO4 for High-Performance Energy Storages Needed Supercapacitor and Applications in Falling System [J].
Liu, Wei ;
Liu, Zhiwei ;
Chen, Bin ;
Zhu, Jiao .
JOURNAL OF NANOELECTRONICS AND OPTOELECTRONICS, 2025, 20 (04) :382-388
[32]   Box-Behnken Design Optimization of photocatalytic performance of ZnWO4 nanoparticles multiple doped with selected metals [J].
Abubakar, Hassana Ladio ;
Tijani, Jimoh Oladejo ;
Mustapha, Saheed ;
Abdulkareem, Ambali Saka ;
Abdullahi, Mann ;
Egbosiuba, Titus Chinedu ;
Muya, Francis Ntumba ;
Abd-Elkader, Omar H. ;
Al-Lohedan, Hamad A. ;
Ameh, Alechine Emmanuel ;
Ezzat, Abdelrahman O. .
INORGANIC CHEMISTRY COMMUNICATIONS, 2025, 175
[33]   One-step hydrothermal synthesis and photocatalytic performance of ZnWO4/Bi2WO6 composite photocatalysts for efficient degradation of acetaldehyde under UV light irradiation [J].
Hojamberdiev, Mirabbos ;
Katsumata, Ken-ichi ;
Morita, Koji ;
Bilmes, Sara Aldabe ;
Matsushita, Nobuhiro ;
Okada, Kiyoshi .
APPLIED CATALYSIS A-GENERAL, 2013, 457 :12-20
[34]   Enhanced photocatalytic activities of the heterostructured upconversion photocatalysts with cotton mediated on TiO2/ZnWO4:Yb3+,Tm3+ [J].
Feng, Kaili ;
Huang, Shouqiang ;
Lou, Ziyang ;
Zhu, Nanwen ;
Yuan, Haiping .
DALTON TRANSACTIONS, 2015, 44 (30) :13681-13687
[35]   ZnWO4 nanosheets anchored into reduced graphene oxide as anode materials for enhanced sodium-ion storage performance [J].
Zhao, Wenxi ;
Ma, Xiaoqing .
JOURNAL OF ALLOYS AND COMPOUNDS, 2019, 774 :378-385
[36]   InVO4 nanosheets decorated with ZnWO4 nanorods: A novel composite and its enhanced photocatalytic performance under solar light [J].
Tamtam, Mohan Rao ;
Koutavarapu, Ravindranadh ;
Shim, Jaesool .
ENVIRONMENTAL RESEARCH, 2023, 227
[37]   ZnWO4 nanoparticles as efficient photocatalyst for degradation of para-aminobenzoic acid: Impact of annealing temperature on photocatalytic performance [J].
Faka, V. ;
Tsoumachidou, S. ;
Moschogiannaki, M. ;
Kiriakidis, G. ;
Poulios, I. ;
Binas, V. .
JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY A-CHEMISTRY, 2021, 406
[38]   Origin of the improved photo-catalytic activity of F-doped ZnWO4: A quantum mechanical study [J].
Sun, Honggang ;
Fan, Weiliu ;
Li, Yanlu ;
Cheng, Xiufeng ;
Li, Pan ;
Zhao, Xian .
JOURNAL OF SOLID STATE CHEMISTRY, 2010, 183 (12) :3052-3057
[39]   W-based MOF derived ZnWO4/ZnO@C hierarchical nanoflakes with superior lithium storage performance [J].
Chen, Yao ;
Du, Fei-Hu ;
Lian, Jiabiao ;
Dong, Hanghang ;
Shen, Xiaoping ;
Ji, Zhenyuan ;
Yuan, Aihua .
CERAMICS INTERNATIONAL, 2024, 50 (07) :10363-10373
[40]   Structure and photoluminescence properties of ZnWO4 film prepared by depositing WO3/ZnO/WO3 heterolayer via magnetron sputtering technique [J].
Zhang, Feng ;
Zhang, Yilin ;
Jin, Yun ;
Hu, Dingkang ;
Yuan, Chunlin ;
Yan, Chenchen ;
Tang, Qiyun ;
Hu, Dongdong ;
Liu, Xueqin .
OPTICAL MATERIALS, 2018, 85 :186-192