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The Nitrilimine–Alkene Cycloaddition Regioselectivity Rationalized by Density Functional Theory Reactivity Indices

机译:密度泛函理论反应活性指数合理化的丁腈-烯烃环加成反应区域选择性

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Conventional frontier molecular orbital theory is not able to satisfactorily explain the regioselectivity outcome of the nitrilimine–alkene cycloaddition. We considered that conceptual density functional theory (DFT) could be an effective theoretical framework to rationalize the regioselectivity of the title reaction. Several nitrilimine–alkene cycloadditions were analyzed, for which we could find regioselectivity data in the literature. We computed DFT reactivity indices at the B3LYP/6-311G(2d,p)//B3LYP/6-31G(d,p) and employed the grand potential stabilization criterion to calculate the preferred regioisomer. Experimental and calculated regioselectivity agree in the vast majority of cases. It was concluded that predominance of a single regioisomer can be obtained by maximizing (i) the chemical potential difference between nitrilimine and alkene and (ii) the local softness difference between the reactive atomic sites within each reactant. Such maximization can be achieved by carefully selecting the substituents on both reactants. View Full-Text
机译:传统的前沿分子轨道理论不能令人满意地解释腈亚胺-烯烃环加成反应的区域选择性结果。我们认为概念密度泛函理论(DFT)可能是使标题反应的区域选择性合理化的有效理论框架。分析了几种亚硝胺-烯烃环加成反应,我们可以在文献中找到区域选择性数据。我们计算了B3LYP / 6-311G(2d,p)// B3LYP / 6-31G(d,p)的DFT反应性指数,并采用了大势稳定准则来计算优选的区域异构体。实验和计算的区域选择性在大多数情况下是一致的。结论是,可以通过最大化(i)腈和亚胺之间的化学势差和(ii)每个反应物内反应性原子位点之间的局部柔软性差来获得单个区域异构体的优势。可以通过仔细选择两种反应物上的取代基来实现这种最大化。查看全文

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