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首页> 外文期刊>Angewandte Chemie >Dioxygen Activation and Pyrrole alpha-Cleavage with Calix[4]pyrrolato Aluminates: Enzyme Model by Structural Constraint
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Dioxygen Activation and Pyrrole alpha-Cleavage with Calix[4]pyrrolato Aluminates: Enzyme Model by Structural Constraint

机译:用Calix [4]吡咯醇铝酸盐硅酸盐硅酸盐和吡咯α-切割:酶模型结构约束

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摘要

The present work describes the reaction of triplet dioxygen with the porphyrinogenic calix[4]pyrrolato aluminates to alkylperoxido aluminates in high selectivity. Multiconfigurational quantum chemical computations disclose the mechanism for this spin-forbidden process. Despite a negligible spin-orbit coupling constant, the intersystem crossing (ISC) is facilitated by singlet and triplet state degeneracy and spin-vibronic coupling. The formed peroxides are stable toward external substrates but undergo an unprecedented oxidative pyrrole alpha-cleavage by ligand aromatization/dearomatization-initiated O-O sigma-bond scission. A detailed comparison of the calix[4]pyrrolato aluminates with dioxygen-related enzymology provides insights into the ISC of metal- or cofactor-free enzymes. It substantiates the importance of structural constraint and element-ligand cooperativity for the functions of aerobic life.
机译:本工作描述了三重态氧与卟啉生成的杯[4]吡咯铝酸盐高选择性地反应为烷基过氧化物铝酸盐。多组态量子化学计算揭示了这种自旋禁闭过程的机制。尽管自旋-轨道耦合常数可以忽略不计,但单重态和三重态简并度以及自旋-振动耦合促进了系统间交叉(ISC)。形成的过氧化物对外部底物稳定,但通过配体芳构化/脱芳构化引发O-O西格玛键断裂,经历前所未有的氧化吡咯-α裂解。通过对杯[4]吡咯铝酸盐与氧相关酶学的详细比较,可以深入了解无金属或辅助因子酶的ISC。它证实了结构约束和元素-配体协同作用对有氧生命功能的重要性。

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