化学
硼烷
硼
酮
试剂
硼烷
酒
氨硼烷
反应机理
计算化学
氢
有机化学
氢气储存
催化作用
作者
Xu Wang,Wei Yao,Danhong Zhou,Hongjun Fan
出处
期刊:Molecular Physics
[Taylor & Francis]
日期:2013-02-22
卷期号:111 (20): 3014-3024
被引量:12
标识
DOI:10.1080/00268976.2013.766366
摘要
In spite of a potential hydrogen storage material, ammonia borane (AB) was recently found to be a good hydrogenation reagent. It can reduce certain ketones to alcohols or borate esters, and imines to amines. The mechanisms of these reactions are not fully understood yet, and have been systematically studied using high-level CCSD(T) calculations in this work. We have validated theoretically that the forming of alcohols and amines undergoes concerted double-hydrogen transfer (DHT) mechanism. Furthermore, we predicted that the DHT process is facile for more general ketones and imines. For the borate ester formation, we found a pretty high barrier for the experimentally derived stepwise mechanism. Alternatively, we propose that the reaction starts with the DHT process to form alcohol and NH2BH2, followed by alcoholysis of NH2BH2 to form the first B–O bond. This mechanism is in good agreement with the current experimental facts, and also explains why ketone reduction affords different products at different conditions. For these reaction systems, the performances of M06-2x and MP2 (underestimate the barrier by 5–7 kcal/mol, but with right trends) are better than B3LYP and BLYP methods (underestimate the barrier by 0–5 kcal/mol).
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