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锚定在基于联吡啶的共价有机框架上的镍单原子:增强对乙酰氨基酚光降解的活性位点

Nickel single atoms anchored on a bipyridine-based covalent organic framework: boosting active sites for photodegradation of acetaminophen.

作者信息

Wen Guijiao, Peng Qianqian, Yuan Chen, He Juan, Hou Xiandeng

机构信息

Analytical & Testing Centre, Sichuan University, Chengdu, Sichuan 610064, China.

College of Chemistry, Sichuan University, Chengdu, Sichuan 610064, China.

出版信息

Nanoscale. 2024 Dec 19;17(1):322-332. doi: 10.1039/d4nr02759k.

Abstract

It remains crucial but challenging to construct single-atom photocatalysts based on covalent organic framework (COF) materials in a simple, fast, and controllable manner and to clarify their structure-efficacy relationship. Here, a single-atom photocatalyst (Ni-TpBpy) featuring atomically dispersed Ni sites with a high loading content and a specific tetra-coordinated N-Ni-Cl environment in a bipyridine-based COF was for the first time rapidly synthesized using dielectric barrier discharge (DBD) plasma and a wet chemical method. Visible light-driven Ni-TpBpy can achieve 97.8% photodegradation efficiency of acetaminophen at 0.177 min in 30 min, outperforming other advanced photocatalysts. Experimental studies and density-functional theory (DFT) calculation clarified the role of well-dispersed Ni active sites in enhanced photodegradation, which not only narrowed the bandgap, facilitating carrier separation and migration, but also promoted the generation of reactive superoxide radicals. This study represents the first use of single-atom Ni-TpBpy in the efficient photocatalytic degradation of emerging pollutants with remarkable stability and universality, bringing new insights into the application of COF-based single-atom materials in environmental remediation.

摘要

以简单、快速且可控的方式构建基于共价有机框架(COF)材料的单原子光催化剂,并阐明其结构-效能关系,仍然至关重要但具有挑战性。在此,首次使用介质阻挡放电(DBD)等离子体和湿化学方法,在基于联吡啶的COF中快速合成了一种单原子光催化剂(Ni-TpBpy),其具有原子分散的Ni位点、高负载量以及特定的四配位N-Ni-Cl环境。可见光驱动的Ni-TpBpy在30分钟内0.177分钟时可实现对乙酰氨基酚97.8%的光降解效率,优于其他先进的光催化剂。实验研究和密度泛函理论(DFT)计算阐明了分散良好的Ni活性位点在增强光降解中的作用,其不仅缩小了带隙,促进了载流子的分离和迁移,还促进了活性超氧自由基的产生。这项研究首次将单原子Ni-TpBpy用于新兴污染物的高效光催化降解,具有显著的稳定性和通用性,为基于COF的单原子材料在环境修复中的应用带来了新的见解。

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