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A molecular electron density theory study of the insertion of CO into frustrated Lewis pair boron-amidines: a [4+1] cycloaddition reaction

机译:分子电子密度理论研究与令人沮丧的路易斯对硼 - 脒的插入:A [4 + 1]环加成反应

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The insertion of CO into hydrogenated boron-amidine 1 yielding five-membered diazaborolone (5DAB) 3 has been studied within the molecular electron density theory (MEDT) at the DFT omega B97X-D/6-311G(d,p) level. This is a domino process comprised of two consecutive reactions: (i) the dehydrogenation of 1 yielding the frustrated Lewis pair (FLP) boron-amidine 4, which quickly equilibrates with four-membered diazaborolone (4DAB) 2; and (ii) the addition of CO into FLP 4, yielding the final 5DAB 3. Analysis of the Gibbs free energies indicates that the extrusion of H-2 demands a high Delta G(not equal) of 28.6 kcalmol(-1), being endergonic by 6.7 kcalmol(-1). The subsequent addition of CO into FLP 4 presents a low Delta G(not equal) of 15.0 kcalmol(-1); formation of 5DAB 3 being exergonic by -5.7 kcalmol(-1) from hydrogenated boron-amidine 1. An analysis of the bonding changes along the insertion of CO in a smaller FLP model indicates that this reaction can be considered a [4 + 1] cycloaddition reaction taking place via a five-membered pseudocyclic transition state associated with a two-stage one-step mechanism. Analysis of the conceptual DFT reactivity indices suggests that the initial attack of CO on FLP 4 is an acid/base process in which the carbenoid carbonyl character allows CO to participate as a Lewis base, rather than a nucleophilic/electrophilic interaction. The results arising from the analysis of the Parr functions, however, coincide with this behaviour.
机译:在DFT Omega B97X-D / 6-311G(D,P)水平的分子电子密度理论(MEDT)内研究了共同的氢化硼 - 脒1的插入氢化硼 - 脒1,得到了分子电子密度理论(METT)。这是由两个连续反应组成的多米诺工艺:(i)1产生令人沮丧的Lewis对(FLP)硼 - 脒4的脱氢,其与四元二氮杂硼酮(4dab)2迅速平衡; (ii)加入FLP 4中的CO,产生最终的5DAB 3. GIBBS自由能的分析表明H-2的挤出需要28.6 kcalmol(-1)的高δg(不等于)肌肌醇6.7 kcalmol(-1)。随后加入CO进入FLP 4呈现为15.0 kcalmol(-1)的低δg(不等于);从氢化硼 - 脒基中形成5dab 3的A.5.7 kcalmol(-1)。沿着较小FLP模型中的CO插入的键合变化的分析表明该反应可以被认为是[4 + 1]通过与两级一步机构相关的五元伪过渡状态发生环加成反应。概念DFT反应性指数的分析表明CO在FLP 4上的初始攻击是一种酸/碱过程,其中甲苯羰基族允许CO作为Lewis基础,而不是亲核/亲电子相互作用。然而,从PARR功能分析产生的结果与这种行为一致。

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