摘要
Reproducing the highly efficient catalytic cascade system to mimic life behaviorsin vitrohas been intensively investigated over the past few decades. However, except for biocatalysis with enzymes, most chemocatalytic cascades in essence combine several reactions that occur over mutually independent catalytic sites in a container. Herein, with a series of control experiments and stepwise theoretical derivation based on the calculations of density functional theory and a semi-empirical method, a generalized cascade catalysis is discovered for the chemocatalytic conversion of CO2to higher alcohols over a porphyrinic zirconium metal-organic framework, PCN-224-Cu. Two types of catalytic sites in PCN-224-Cu,i.e., the Zr6cluster and TCPP-Cu unit, act like organelles, which can complete a class of reactions instead of particular one. The Zr6cluster is in charge of molecular dissociation, while the TCPP-Cu unit is responsible for molecular assembly. Therefore, semi-finished intermediates repeatedly transfer between the two types of catalytic sites until the ultimate formation of ethanol with high efficiency (ethanol yield, 4.53 mmol h−1gcat.−1at 403 K) and selectivity (∼100%).
源语言 | 英语 |
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页(从-至) | 24510-24516 |
页数 | 7 |
期刊 | Journal of Materials Chemistry A |
卷 | 9 |
期 | 43 |
DOI | |
出版状态 | 已出版 - 21 11月 2021 |