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基于金属卟啉的二维金属有机框架中双金属活性中心协同催化实现环烷烃和烷基芳烃与氧气的高效选择性氧化

Efficient and Selective Oxygenation of Cycloalkanes and Alkyl Aromatics with Oxygen through Synergistic Catalysis of Bimetallic Active Centers in Two-Dimensional Metal-Organic Frameworks Based on Metalloporphyrins.

作者信息

Zhou Xin-Yan, Fu Bo, Jin Wen-Dong, Wang Xiong, Wang Ke-Ke, Wang Mei, She Yuan-Bin, Shen Hai-Min

机构信息

College of Chemical Engineering, Zhejiang University of Technology, Hangzhou 310014, China.

出版信息

Biomimetics (Basel). 2023 Jul 21;8(3):325. doi: 10.3390/biomimetics8030325.

Abstract

Confined catalytic realms and synergistic catalysis sites were constructed using bimetallic active centers in two-dimensional metal-organic frameworks (MOFs) to achieve highly selective oxygenation of cycloalkanes and alkyl aromatics with oxygen towards partly oxygenated products. Every necessary characterization was carried out for all the two-dimensional MOFs. The selective oxygenation of cycloalkanes and alkyl aromatics with oxygen was accomplished with exceptional catalytic performance using two-dimensional MOF Co-TCPPNi as a catalyst. Employing Co-TCPPNi as a catalyst, both the conversion and selectivity were improved for all the hydrocarbons investigated. Less disordered autoxidation at mild conditions, inhibited free-radical diffusion by confined catalytic realms, and synergistic C-H bond oxygenation catalyzed by second metal center Ni employing oxygenation intermediate R-OOH as oxidant were the factors for the satisfying result of Co-TCPPNi as a catalyst. When homogeneous metalloporphyrin T(4-COOCH)PPCo was replaced by Co-TCPPNi, the conversion in cyclohexane oxygenation was enhanced from 4.4% to 5.6%, and the selectivity of partly oxygenated products increased from 85.4% to 92.9%. The synergistic catalytic mechanisms were studied using EPR research, and a catalysis model was obtained for the oxygenation of C-H bonds with O. This research offered a novel and essential reference for both the efficient and selective oxygenation of C-H bonds and other key chemical reactions involving free radicals.

摘要

利用二维金属有机框架(MOF)中的双金属活性中心构建受限催化区域和协同催化位点,以实现环烷烃和烷基芳烃与氧气的高选择性氧化反应,生成部分氧化产物。对所有二维MOF进行了各项必要表征。以二维MOF Co-TCPPNi为催化剂,环烷烃和烷基芳烃与氧气的选择性氧化反应展现出优异的催化性能。使用Co-TCPPNi作为催化剂,所研究的所有烃类的转化率和选择性均得到提高。温和条件下自氧化无序性降低、受限催化区域抑制自由基扩散以及第二金属中心Ni利用氧化中间体R-OOH作为氧化剂催化协同C-H键氧化,这些因素共同促成了Co-TCPPNi作为催化剂的良好效果。当均相金属卟啉T(4-COOCH)PPCo被Co-TCPPNi取代时,环己烷氧化反应的转化率从4.4%提高到5.6%,部分氧化产物的选择性从85.4%提高到92.9%。利用电子顺磁共振(EPR)研究了协同催化机理,并获得了C-H键与O氧化反应的催化模型。该研究为C-H键的高效选择性氧化以及其他涉及自由基的关键化学反应提供了新颖且重要的参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a51/10807029/b99bec5370f2/biomimetics-08-00325-sch001.jpg

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