催化作用
甲烷单加氧酶
卟啉
选择性
化学
甲烷
吸附
甲醇
烷基
甲烷厌氧氧化
金属
金属有机骨架
组合化学
化学工程
光化学
有机化学
工程类
作者
Jianfei Sui,Ming‐Liang Gao,Bing Qian,Chengyuan Liu,Yang Pan,Zheng Meng,Daqiang Yuan,Hai‐Long Jiang
标识
DOI:10.1016/j.scib.2023.07.031
摘要
Inspiration from natural enzymes enabling creationary catalyst design is appealing yet remains extremely challenging for selective methane (CH4) oxidation. This study presents the construction of a biomimetic catalyst platform for CH4 oxidation, which is constructed by incorporating Fe-porphyrin into a robust metal–organic framework, UiO-66, furnished with saturated monocarboxylic fatty acid bearing different long alkyl chains. The catalysts demonstrate the high efficiency in the CH4 to methanol (CH3OH) conversion at 50 °C. Moreover, the selectivity to CH3OH can be effectively regulated and promoted through a fine-tuned microenvironment by hydrophobic modification around the Fe-porphyrin. The long-chain fatty acids anchored on the Zr-oxo cluster of UiO-66 can not only tune the electronic state of the Fe sites to improve CH4 adsorption, but also restrict the amount of H2O2 around the Fe sites to reduce the overoxidation. This behavior resembles the microenvironment regulation in methane monooxygenase, resulting in high CH3OH selectivity.
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