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首页> 外文期刊>Chemistry: A European journal >Deeper Insight into the Factors Controlling H-2 Activation by Geminal Aminoborane-Based Frustrated Lewis Pairs
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Deeper Insight into the Factors Controlling H-2 Activation by Geminal Aminoborane-Based Frustrated Lewis Pairs

机译:对基于氨基氨基硼烷的失意路易斯对控制H-2活化的因素的更深入了解

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H-2 activation mediated by geminal aminoboranebased frustrated Lewis pairs (FLPs; R2N-CH2-BR'(2)) has been computationally explored within the density functional theory framework. It is found that the activation barrier of this process as well as the geometry of the corresponding transition states strongly depend on the nature of the substituents directly attached either to the acidic or the basic centers of the FLPs. The physical factors controlling the whole activation path are quantitatively described in detail by means of the activation strain model of reactivity combined with the energy decomposition analysis method. This methodology suggests a highly orbital-controlled mechanism where the degree of charge transfer cooperativity between the most important donor-acceptor orbital interactions, namely LP(N)->sigma*(H-2) and sigma(H-2)-> p(pi)(B), along the reaction coordinate constitutes a suitable indicator of the reaction barrier.
机译:在密度泛函理论框架内,已通过计算探索了由基于双氨基硼烷的沮丧路易斯对(FLPs; R2N-CH2-BR'(2))介导的H-2活化。发现该过程的活化势垒以及相应的过渡态的几何形状强烈取决于直接连接至FLP的酸性或碱性中心的取代基的性质。结合反应的活化应变模型和能量分解分析方法,对控制整个活化路径的物理因素进行了详细定量描述。这种方法论提出了高度轨道控制的机制,其中最重要的供体-受体轨道相互作用(即LP(N)-> sigma *(H-2)和sigma(H-2)-> p)之间的电荷转移协同作用程度沿着反应坐标的π(B)构成反应势垒的合适指标。

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