One-step hydrothermal preparation of Ta-doped ZnO nanorods for improving decolorization efficiency under visible light

被引:15
|
作者
Ha Luu, Thi Viet [1 ]
Dao, Ngoc Nhiem [2 ,3 ]
Le Pham, Hoang Ai [1 ]
Nguyen, Quang Bac [2 ,3 ]
Nguyen, Van Cuong [1 ]
Dang, Phuc Huu [4 ]
机构
[1] Ind Univ Ho Chi Minh City, Fac Chem Engn, Ho Chi Minh City 700000, Vietnam
[2] Vietnam Acad Sci & Technol, Inst Mat Sci, 18 Hoang Quoc Viet, Hanoi 100000, Vietnam
[3] Vietnam Acad Sci & Technol, Grad Univ Sci & Technol, 18 Hoang Quoc Viet, Hanoi 100000, Vietnam
[4] Ind Univ Ho Chi Minh City, Fac Fundamental Sci, Ho Chi Minh City 700000, Vietnam
关键词
PHOTOCATALYTIC ACTIVITY; OPTICAL-PROPERTIES; NANOPARTICLES; CE; DEGRADATION; PERFORMANCE; DYES; LA;
D O I
10.1039/d2ra07655a
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In this work, Ta-doped ZnO (Ta-ZnO) nanomaterials were synthesized by the hydrothermal method at different temperatures (110, 150, and 170 degrees C) for the photodegradation of methylene blue (MB) under visible light. Ta doping significantly affects the crystal defects, optical properties, and MB photocatalytic efficiency of ZnO materials. The optical absorption edge of Ta-ZnO 150 was redshifted compared to undoped ZnO, correlating to bandgap narrowing (EgTa- ZnO = 2.92 eV; EgZnO = 3.07 eV), implying that Ta doped ZnO is capable of absorbing visible light. Besides, Ta-doping was the reason for enhanced blue light emission in the photoluminescence spectrum, which is related to the oxygen defect V0O. It is also observed in the XPS spectra, where the percentage of oxygen in the oxygendeficient regions (O531.5 eV) of Ta-ZnO150 is higher than that of ZnO150. It is an important factor in enhancing ZnO's photocatalytic efficiency. The MB degradation efficiency of Ta-doped ZnO reached the highest for Ta-ZnO 150 and was 2.5 times higher than ZnO under a halogen lamp (HL). Notably, the influence of hydrothermal temperature on the structural, morphological, and photoelectrochemical properties was discussed in detail. As a result, the optimal hydrothermal temperature for synthesizing the nanorod is 150 degrees C. Furthermore, photocatalytic experiments were also performed under simulated sunlight and natural sunlight. The nature of the photo-oxidative degradation of MB was also investigated.
引用
收藏
页码:5208 / 5218
页数:11
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