College of Environmental Science and Engineering, Taiyuan University of Technology, 79 Yingze Street, Wanbailin District, Taiyuan 030024, China.
School of Mechanical Engineering, University of Western Australia, 35 Stirling Highway, Perth, WA 6009, Australia.
Int J Mol Sci. 2022 Oct 30;23(21):13221. doi: 10.3390/ijms232113221.
Herein, ZnInS photocatalyst with (110) exposed facet was prepared by low temperature solvothermal method. On this basis, a highly efficient binary ZnInS/g-CN was obtained by low temperature solvothermal method and applied to the degradation of tetracycline (TC). The samples of the preparation were characterized by X-ray diffraction, scanning electron microscope, transmission electron microscope, UV-vis diffuse reflection spectroscopy, and photoluminescence spectroscopy. Furthermore, the degradation performance of photocatalysts on TC was investigated under different experimental conditions. Finally, the mechanism of ZnInS/g-CN composite material degrading TC is discussed. The results show that ZnInS and ZnInS/g-CN photocatalysts with excellent performance could be successfully prepared at lower temperature. The ZnInS/g-CN heterojunction photocatalyst could significantly improve the photocatalytic activity compared with g-CN. After 150 min of illumination, the efficiency of 80%ZnInS/g-CN to degrade TC was 1.35 times that of g-CN. The improvement of photocatalytic activity was due to the formation of ZnInS/g-CN heterojunction, which promoted the transfer of photogenerated electron-holes. The cycle experiment test confirmed that ZnInS/g-CN composite material had excellent stability. The free radical capture experiment showed that ·O was the primary active material. This study provides a new strategy for the preparation of photocatalysts with excellent performance at low temperature.
本文采用低温溶剂热法制备了具有(110)暴露面的 ZnInS 光催化剂。在此基础上,通过低温溶剂热法制备了高效的二元 ZnInS/g-CN,并将其应用于四环素(TC)的降解。通过 X 射线衍射、扫描电子显微镜、透射电子显微镜、紫外-可见漫反射光谱和光致发光光谱对制备样品进行了表征。此外,还在不同实验条件下考察了光催化剂对 TC 的降解性能。最后,讨论了 ZnInS/g-CN 复合材料降解 TC 的机理。结果表明,可在较低温度下成功制备出性能优异的 ZnInS 和 ZnInS/g-CN 光催化剂。ZnInS/g-CN 异质结光催化剂与 g-CN 相比,可显著提高光催化活性。光照 150 min 后,80%ZnInS/g-CN 降解 TC 的效率是 g-CN 的 1.35 倍。光催化活性的提高归因于 ZnInS/g-CN 异质结的形成,促进了光生载流子的转移。循环实验测试证实了 ZnInS/g-CN 复合材料具有优异的稳定性。自由基捕获实验表明·O 是主要的活性物质。该研究为低温下制备性能优异的光催化剂提供了新策略。