Yang Zheng, Xie Heng-Shen, Lin Wei-Yuan, Chen Yi-Wu, Teng Daoguang, Cong Xing-Shun
School of Architectural Intelligence, Jiangsu Vocational Institute of Architectural Technology, Xuzhou221116, P. R. China.
Jiangsu Collaborative Innovation Center for Building Energy Saving and Construct Technology, Xuzhou221116, P. R. China.
ACS Omega. 2022 Oct 26;7(45):40882-40891. doi: 10.1021/acsomega.2c03846. eCollection 2022 Nov 15.
Stable and efficient photocatalytic degradation of organic pollutants has been achieved a ZIF-67-derived Co-embedded N-doped nanoporous carbon material catalyst (Co-N/C). The catalyst features a well-distributed structure, suitable specific surface area, and more active sites according to the various characterization analyses. The photocatalytic activity of Co-N/C was evaluated by the degradation of the target pollutant Rhodamine B (RhB). As a result, RhB could establish an adsorption-desorption equilibrium in the dark within 30 min and was thoroughly degraded into HO and CO by Co-N/C under 500 W visible light irradiation in 40 min. Moreover, radical-quenching experiments and reactive oxygen species monitoring were performed to further probe the plausible photodegradation mechanism of RhB. Co-N/C is also appropriate for other alternative dyes and antibiotics affording ideal removal efficiencies. After the reaction, Co-N/C could be facilely separated by an external magnetic field and reused for eight reaction cycles without obvious deactivation of its photocatalytic properties. This study is expected to provide an instructive guideline for the design of efficient and recyclable composite photocatalysts derived from metal-organic frameworks for a broad range of environmental remediation processes.
通过一种由ZIF-67衍生的嵌入钴的氮掺杂纳米多孔碳材料催化剂(Co-N/C),实现了对有机污染物的稳定高效光催化降解。根据各种表征分析,该催化剂具有结构分布均匀、比表面积合适以及活性位点更多的特点。通过目标污染物罗丹明B(RhB)的降解来评估Co-N/C的光催化活性。结果表明,RhB在黑暗中30分钟内可建立吸附-解吸平衡,在500W可见光照射下,Co-N/C在40分钟内可将其彻底降解为H₂O和CO₂。此外,进行了自由基猝灭实验和活性氧监测,以进一步探究RhB可能的光降解机制。Co-N/C也适用于其他替代染料和抗生素,具有理想的去除效率。反应后,Co-N/C可通过外部磁场轻松分离,并重复使用八个反应循环,其光催化性能无明显失活。本研究有望为设计用于广泛环境修复过程的高效可回收金属有机框架衍生复合光催化剂提供指导性方针。