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利用具有产物排斥能力的杂化二氧化硅表面的双金属卟啉接力催化,高效抑制C-H键官能化中部分氧化产物的深度转化

Efficient Inhibition of Deep Conversion of Partial Oxidation Products in C-H Bonds' Functionalization Utilizing O via Relay Catalysis of Dual Metalloporphyrins on Surface of Hybrid Silica Possessing Capacity for Product Exclusion.

作者信息

Zhang Yu, Feng Xiao-Ling, Ni Jia-Ye, Fu Bo, Shen Hai-Min, She Yuan-Bin

机构信息

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

Hangzhou Copiore Chemical Technology Co., Ltd., Hangzhou 310012, China.

出版信息

Biomimetics (Basel). 2024 Apr 29;9(5):272. doi: 10.3390/biomimetics9050272.

Abstract

To inhibit the deep conversion of partial oxidation products (POX-products) in C-H bonds' functionalization utilizing O, 5-(4-(chloromethyl)phenyl)-10,15,20-tris(perfluorophenyl)porphyrin cobalt(II) and 5-(4-(chloromethyl)phenyl)-10,15,20-tris(perfluorophenyl)porphyrin copper(II) were immobilized on the surface of hybrid silica to conduct relay catalysis on the surface. Fluorocarbons with low polarity and heterogeneous catalysis were devised to decrease the convenient accessibility of polar POX-products to catalytic centers on the lower polar surface. Relay catalysis between Co and Cu was designed to utilize the oxidation intermediates alkyl hydroperoxides to transform more C-H bonds. Systematic characterizations were conducted to investigate the structure of catalytic materials and confirm their successful syntheses. Applied to C-H bond oxidation, not only deep conversion of POX-products was inhibited but also substrate conversion and POX-product selectivity were improved simultaneously. For cyclohexane oxidation, conversion was improved from 3.87% to 5.27% with selectivity from 84.8% to 92.3%, which was mainly attributed to the relay catalysis on the surface excluding products. The effects of the catalytic materials, product exclusion, relay catalysis, kinetic study, substrate scope, and reaction mechanism were also investigated. To our knowledge, a practical and novel strategy was presented to inhibit the deep conversion of POX-products and to achieve efficient and accurate oxidative functionalization of hydrocarbons. Also, a valuable protocol was provided to avoid over-reaction in other chemical transformations requiring high selectivity.

摘要

为了抑制在利用氧进行C-H键官能化过程中部分氧化产物(POX-产物)的深度转化,将5-(4-(氯甲基)苯基)-10,15,20-三(全氟苯基)卟啉钴(II)和5-(4-(氯甲基)苯基)-10,15,20-三(全氟苯基)卟啉铜(II)固定在杂化二氧化硅表面以进行表面接力催化。设计了低极性的碳氟化合物和多相催化,以降低极性POX-产物与低极性表面上催化中心的便捷可达性。设计Co和Cu之间的接力催化以利用氧化中间体烷基氢过氧化物转化更多的C-H键。进行了系统表征以研究催化材料的结构并确认其成功合成。应用于C-H键氧化时,不仅抑制了POX-产物的深度转化,同时还提高了底物转化率和POX-产物选择性。对于环己烷氧化,转化率从3.87%提高到5.27%,选择性从84.8%提高到92.3%,这主要归因于表面上排除产物的接力催化。还研究了催化材料、产物排除、接力催化、动力学研究、底物范围和反应机理的影响。据我们所知,提出了一种实用且新颖的策略来抑制POX-产物的深度转化并实现烃类的高效准确氧化官能化。此外,还提供了一个有价值的方案来避免在其他需要高选择性的化学转化中过度反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de3b/11117990/eb38f425c87f/biomimetics-09-00272-sch001.jpg

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