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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Cycloaddition Reactions between H2C = CHR (R = H, CN, CH3) and a Cyclic P/B Frustrated Lewis Pair: A DFT Study
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Cycloaddition Reactions between H2C = CHR (R = H, CN, CH3) and a Cyclic P/B Frustrated Lewis Pair: A DFT Study

机译:H2C = CHR(R = H,CN,CH3)和循环P / B令人沮丧的Lewis对之间的环加成反应:DFT研究

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摘要

The cycloaddition of ethylene, cyanoethylene, and propylene to a five-membered P/B frustrated Lewis pair (FLP) is shown to be highly favorable under normal conditions, as confirmed by the computed thermodynamic and kinetic data. All of these cycloaddition reactions are concerted as highlighted by the intrinsic reaction coordinate (IRC) and Wiberg bond index calculations. Almost 70% of the reaction force is required for structural orientation to initiate electronic activity. The reactions are interpreted by the frontier molecular orbital (FMO) analysis and conceptual density functional theory (DFT)-based reactivity descriptors. It appears that ethylene and propylene will act as nucleophiles, while the FLP will act as an electrophile throughout the cycloaddition reaction, however, cyanoethylene will act as an electrophile and the FLP as a nucleophile. Regioselectivities of the cycloadditon of cyanoethylene and propylene to the FLP are further verified through philicity and dual descriptors. It is demonstrated that an FLP can be forced to act as an electrophile or a nucleophile by intelligently selecting its partner in a cycloaddition reaction. Even the P and B centers would behave differently within the same FLP. This strategy may be properly exploited by the experimentalists in designing a suitable reaction for the synthesis of any useful molecule possessing the desired property.
机译:乙烯,氰基亚和丙烯的五元P / B的环加成受挫路易斯对(FLP)被示出为在正常情况下非常有利的,由所计算的热力学和动力学数据所证实。所有这些环加成反应都是由内在反应坐标(IRC)和Wiberg键指数计算突出的。结构取向需要几乎70%的反作用力以启动电子活动。反应由前部分子轨道(FMO)分析和概念密度泛函理论(DFT)的反应性描述符来解释。似乎乙烯和丙烯将充当亲核试剂,而FLP将充当在整个环加成反应过程中的亲电性,然而,氰乙烯将作为亲电子和FLP作为亲核试剂。通过性费和双描述符进一步验证氰基乙烯和丙烯环核和丙烯丙烯环核和丙烯的区域。证明,通过在环加成反应中智能地选择其伴侣,FLP可以被迫用作亲电子或亲核官量。即使是P和B中心也会在同一FLP中表现不同。实验主义者可以在设计合适的反应中适当地利用这种策略,用于合成具有所需性质的任何有用分子的合适反应。

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