区域选择性
还原消去
硼烷
氧化加成
催化作用
化学
离解(化学)
键离解能
氢键
硼氢化
烯烃纤维
键能
药物化学
光化学
有机化学
分子
作者
Ju Peng,Xiaoqian He,Xiaoling Luo,Kangbao Zhong,Li‐Li Liao,Ruopeng Bai,Yu Lan
出处
期刊:ACS Catalysis
[American Chemical Society]
日期:2024-05-08
卷期号:14 (10): 8030-8040
被引量:3
标识
DOI:10.1021/acscatal.4c00304
摘要
The bond dissociation energy (BDE) in reactants was found to be critical for determining the tunable pathways of low-valent tungsten-catalyzed chain-walking hydroboration and hydrogermylation of β,γ-unsaturated amides, which is considered to be the key factor in the regioselective determination. Computational results revealed that the higher BDE of the H–B bond hampers the oxidative hydrogen migration, leading to borane reacting with tungsten later than alkenes. Thus, the generation of a β-borylated product was found to be favorable through H–Cβ bond oxidative addition, H–Cδ bond reductive elimination, H–B bond oxidative hydrogen migration, and B–Cβ bond reductive elimination. As a comparison, the lower BDE of H–Ge leads to a facile oxidative hydrogen migration of the H–Ge bond, which finally results in the formation of an α-germylated product after germyl-assisted olefin walking. Further distortion–interaction analysis confirmed that the weak H–Ge bond was easier to distort for its reactions.
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