Lu Jianyi, Guo Qianqian, Chen Jingyang, Xie Kunhan, Guan Xiaohui, Yang Liu, Wang Guangsheng
School of Chemical Engineering, Northeast Electric Power University, Jilin132012, P. R. China.
School of Chemistry, Beihang University, Beijing100191, P. R. China.
ACS Omega. 2022 Dec 28;8(1):529-538. doi: 10.1021/acsomega.2c05483. eCollection 2023 Jan 10.
ZnS@InS core-shell structures with high photocatalytic activity have been delicately designed and synthesized. The unique structure and synergistic effects of the composites have an important influence on the improvement of photocatalytic activity. The photocatalytic activity has been studied by photodegrading individual eosin B (EB) and the mixture solution consisting of eosin B and rhodamine B (EB-RhB) in the presence of hydrogen peroxide (HO) under simulated sunlight irradiation. The results show that all of the photocatalysts with different contents of InS exhibit enhanced catalytic activity compared to pure ZnS for the degradation of EB and EB-RhB solution. When the theoretical molar ratio of ZnS to InS was 1:0.5, the composite presents the highest photocatalytic efficiency, which could eliminate more than 98% of EB and 94% of EB-RhB. At the same time, after five cycles of photocatalytic tests, the photocatalytic efficiency could be about 96% for the degradation of the EB solution, and relatively high photocatalytic activity could also be obtained for the degradation of the EB-RhB mixed solution. This work has proposed a facile synthetic process to realize the controlled preparation of core-shell ZnS@InS composites with effectively modulated structures and compositions, and the composites have also proved to be high-efficiency photocatalysts for the disposal of complicated pollutants.
具有高光催化活性的硫化锌@硫化铟核壳结构已被精心设计和合成。复合材料独特的结构和协同效应对光催化活性的提高具有重要影响。通过在模拟太阳光照射下,在过氧化氢(HO)存在的情况下,光降解单独的曙红B(EB)以及由曙红B和罗丹明B组成的混合溶液(EB-RhB)来研究光催化活性。结果表明,与纯硫化锌相比,所有不同硫化铟含量的光催化剂对EB和EB-RhB溶液的降解均表现出增强的催化活性。当硫化锌与硫化铟的理论摩尔比为1:0.5时,复合材料呈现出最高的光催化效率,可去除超过98%的EB和94%的EB-RhB。同时,经过五个循环的光催化测试后,对于EB溶液的降解,光催化效率可达约96%,对于EB-RhB混合溶液的降解也能获得较高的光催化活性。这项工作提出了一种简便的合成工艺,以实现具有有效调控结构和组成的核壳硫化锌@硫化铟复合材料的可控制备,并且该复合材料已被证明是用于处理复杂污染物的高效光催化剂。