Key Laboratory of Building Safety and Energy Efficiency, Ministry of Education, Department of Water Engineering and Science, College of Civil Engineering, Hunan University, Changsha, 410082, PR China.
Key Laboratory of Building Safety and Energy Efficiency, Ministry of Education, Department of Water Engineering and Science, College of Civil Engineering, Hunan University, Changsha, 410082, PR China.
J Hazard Mater. 2020 Aug 5;395:122613. doi: 10.1016/j.jhazmat.2020.122613. Epub 2020 Apr 17.
As a quaternary copper-based semiconductor, CuZnSnS (CZTS) is drawing growing attention and is anticipated as a promising photocatalyst, thanks to its large absorption coefficient, exceptional photostability, and theoretical power conversion efficiency. However, CZTS has never been used as an activator of HO for the degradation of refractory organic pollutants. In this study, the synthesis of CZTS nanoparticles obtained with diverse morphologies and crystallinities using solvents of deionized water (CZTS-W) and ethylene glycol (CZTS-EG) was examined in the activation of HO to degrade sulfadiazine (SDZ). The results revealed that CZTS coupled with HO could be an effective system for the degradation of SDZ. Compared to CZTS-EG, CZTS-W presented higher reusability in consecutive cycles with negligible leaching of copper. Reactive oxygen species quenching tests and electron paramagnetic resonance analyses illustrated that •O, •OH, and O contributed to the degradation of SDZ, and O prevailed over •O and •OH. The mechanistic investigation showed that efficient degradation could be associated to the effective recycling of Cu(II)/Cu(I) and low-valent/high-valent sulfur. Also, the degradation pathways of SDZ have been proposed through the detection of intermediate products. This study manifests that CZTS synthesized using deionized water is encouraging for the elimination of organic pollutants.
作为一种四元铜基半导体,CuZnSnS(CZTS)因其大的吸收系数、优异的光稳定性和理论的功率转换效率,正受到越来越多的关注,并有望成为一种有前途的光催化剂。然而,CZTS 从未被用作 HO 的激活剂来降解难处理的有机污染物。在这项研究中,使用去离子水(CZTS-W)和乙二醇(CZTS-EG)作为溶剂,合成了不同形貌和结晶度的 CZTS 纳米粒子,考察了它们在 HO 激活下降解磺胺嘧啶(SDZ)的性能。结果表明,CZTS 与 HO 结合可以成为降解 SDZ 的有效体系。与 CZTS-EG 相比,CZTS-W 在连续循环中具有更高的可重复使用性,铜的浸出可忽略不计。活性氧物种猝灭实验和电子顺磁共振分析表明,•O、•OH 和 O 对 SDZ 的降解有贡献,而 O 占主导地位。机理研究表明,有效的降解可能与 Cu(II)/Cu(I)和低价/高价硫的有效循环有关。此外,通过检测中间产物,提出了 SDZ 的降解途径。本研究表明,使用去离子水合成的 CZTS 有望用于去除有机污染物。