Xiong Yuhao, Qin Yuemei, Su Linjing, Ye Fanggui
State Key Laboratory for the Chemistry and Molecular Engineering of Medicinal Resources, College of Chemistry and Pharmaceutical Science, Guangxi Normal University, Guilin, 541004, P. R. China.
Institute of Food science and Engineering Technology, Hezhou University, Hezhou, 542899, P. R. China.
Chemistry. 2017 Aug 16;23(46):11037-11045. doi: 10.1002/chem.201701513. Epub 2017 Jul 6.
Artificial enzymes is an emerging field of research owing to the remarkable advantages of enzyme mimics over their natural counterpart, including tunable catalytic efficiencies, lower cost, ease of preparation, and excellent tolerance to variations of the reaction system. Herein, we report an efficient peroxidase mimic based on a copper-modified covalent triazine framework (CCTF). Owing to its unique specific surface area, atomically dispersed active Cu sites, efficient electron transfer, and enhanced photo-assisted enzyme-like activity, the CCTF showed enhanced peroxidase-like enzyme activity. Therefore, copper modification represents an effective route to tailor the peroxidase-like activity of the covalent triazine frameworks. Furthermore, the mechanism of the enhanced peroxidase-like activity and stability of the CCTF were investigated. As a proof of concept, the CCTF was used for the colorimetric detection of H O and decomposition of organic pollutants. This work provides a new strategy for the design of enzyme mimics with a broad range of potential applications.
由于模拟酶相对于天然酶具有显著优势,包括可调节的催化效率、低成本、易于制备以及对反应体系变化的出色耐受性,人工酶是一个新兴的研究领域。在此,我们报道了一种基于铜修饰共价三嗪框架(CCTF)的高效过氧化物酶模拟物。由于其独特的比表面积、原子分散的活性铜位点、高效的电子转移以及增强的光辅助类酶活性,CCTF表现出增强的过氧化物酶样活性。因此,铜修饰是调节共价三嗪框架过氧化物酶样活性的有效途径。此外,还研究了CCTF增强的过氧化物酶样活性和稳定性的机制。作为概念验证,CCTF用于H₂O₂的比色检测和有机污染物的分解。这项工作为设计具有广泛潜在应用的模拟酶提供了一种新策略。