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结合计算和实验研究对亚胺硼氢化反应的机理洞察

Mechanistic Insight into Hydroboration of Imines from Combined Computational and Experimental Studies.

作者信息

Zou Wentian, Gao Liuzhou, Cao Jia, Li Zhenxing, Li Guoao, Wang Guoqiang, Li Shuhua

机构信息

Key Laboratory of Mesoscopic Chemistry of Ministry of Education, Institute of Theoretical and Computational Chemistry, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing, 210023, P. R. China.

出版信息

Chemistry. 2022 Feb 19;28(11):e202104004. doi: 10.1002/chem.202104004. Epub 2022 Jan 31.

Abstract

Boron Lewis acid-catalyzed and catalyst-free hydroboration reactions of imines are attractive due to the mild reaction conditions. In this work, the mechanistic details of the hydroboration reactions of two different kinds of imines with pinacolborane (HBpin) are investigated by combining density functional theory calculations and some experimental studies. For the hydroboration reaction of N-(α-methylbenzylidene)aniline catalyzed by tris[3,5-bis(trifluoromethyl)phenyl]borane (BAr ), our calculations show that the reaction proceeds through a boron Lewis acid-promoted hydride transfer mechanism rather than the classical Lewis acid activation mechanism. For the catalyst- and solvent-free hydroboration reaction of imine, N-benzylideneaniline, our calculations and experimental studies indicate that this reaction is difficult to occur under the reaction conditions reported previously. With a combination of computational and experimental studies, we have established that the commercially available BH  ⋅ SMe can serve as an efficient catalyst for the hydroboration reactions of N-benzylideneaniline and similar imines. The hydroboration reactions catalyzed by BH  ⋅ SMe are most likely to proceed through a hydroboration/B-H/B-N σ-bond metathesis pathway, which is very different from that of the reaction catalyzed by BAr .

摘要

硼路易斯酸催化以及无催化剂的亚胺硼氢化反应因反应条件温和而备受关注。在本工作中,通过结合密度泛函理论计算和一些实验研究,对两种不同亚胺与频哪醇硼烷(HBpin)的硼氢化反应的机理细节进行了研究。对于由三[3,5 - 双(三氟甲基)苯基]硼烷(BAr )催化的N - (α - 甲基亚苄基)苯胺的硼氢化反应,我们的计算表明该反应通过硼路易斯酸促进的氢化物转移机理进行,而非经典的路易斯酸活化机理。对于亚胺N - 苄基亚苄基苯胺的无催化剂和无溶剂硼氢化反应,我们的计算和实验研究表明,在先前报道的反应条件下该反应难以发生。通过计算和实验研究相结合,我们确定市售的BH  ⋅ SMe可作为N - 苄基亚苄基苯胺及类似亚胺硼氢化反应的有效催化剂。由BH  ⋅ SMe催化的硼氢化反应最有可能通过硼氢化/B - H/B - N σ键复分解途径进行,这与由BAr 催化的反应途径截然不同。

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