化学
立体选择性
乙苯
卟啉
羟基化
堆积
催化作用
计算化学
组合化学
有机化学
酶
作者
Qunmin Wang,Xiahe Chen,Guijie Li,Qidong Chen,Yun‐Fang Yang,Yuanbin She
标识
DOI:10.1021/acs.joc.9b01989
摘要
The mechanism and origins of stereoselectivity of chiral iron porphyrin-catalyzed asymmetric hydroxylation of ethylbenzene were explored with density functional theory. The hydrogen atom abstraction is the rate- and stereoselectivity-determining step. In good agreement with experimental results, the formation of the (R)-1-phenylethanol product is found to be the most favorable pathway. The transition state of hydrogen atom abstraction which leads to the (S)-1-phenylethanol product is unfavorable by 1.7 kcal/mol compared to the corresponding transition state which leads to the (R)-1-phenylethanol product. Enantioselectivity arises from an attractive π-π stacking interaction between the phenyl group of ethylbenzene substrate and the naphthyl group of the porphyrin ligand.
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