Departamento de Ciencias Químicas, Facultad de Ciencias Exactas, Universidad Andres Bello, Av. República 275, Santiago, Chile.
Departamento de Química Orgánica y Fisicoquímica, Facultad de Ciencias Químicas y Farmacéuticas, Universidad de Chile, Sergio Livingstone 1007, Santiago, Chile.
Chemistry. 2018 Jun 21;24(35):8833-8840. doi: 10.1002/chem.201800864. Epub 2018 May 22.
The hydrogenation reaction of multiple bonds that is mediated by geminal aminoborane-based frustrated Lewis pairs (FLPs) has been explored by means of density functional theory calculations. It was found that the release of the activated dihydrogen occurred in a concerted, yet highly asynchronous, manner. The physical factors that control the transformation were quantitatively described in detail by using the activation strain model of reactivity in combination with the energy decomposition analysis method. This approach suggested a cooperative double hydrogen-transfer mechanism, which involves the initial migration of the protic (N)H followed by the nucleophilic attack of the (B)H hydride to the carbon atom of the multiple bond. The influence of both the substituents directly attached to the boron atom of the initial FLP and the nature of the multiple bond on the transformation was also investigated.
通过密度泛函理论计算,研究了由偕胺基硼烷基受阻路易斯对(FLP)介导的多重键的加氢反应。研究发现,活化氢气的释放是以协同但高度异步的方式进行的。通过使用反应活性的应变激活模型与能量分解分析方法相结合,详细描述了控制转化的物理因素。该方法提出了一种协同双氢转移机制,涉及质子化(N)H 的初始迁移,然后是(B)H 氢化物对多重键碳原子的亲核攻击。还研究了初始 FLP 中与硼原子直接相连的取代基以及多重键的性质对转化的影响。