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首页> 外文期刊>The Journal of Organic Chemistry >Substituted 2-(Dimethylamino)biphenyl-2 '-carboxaldehydes as Substrates for Studying n - pi* Interactions and as a Promising Framework for Tracing the Burgi-Dunitz Trajectory
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Substituted 2-(Dimethylamino)biphenyl-2 '-carboxaldehydes as Substrates for Studying n - pi* Interactions and as a Promising Framework for Tracing the Burgi-Dunitz Trajectory

机译:取代的2-(二甲基氨基)联苯-2'-甲醛作为研究n-> pi *相互作用的底物以及追踪Burgi-Dunitz轨迹的有前途的框架

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摘要

The Burgi-Dunitz trajectory traces points along the pathway of bond formation between a nucleophile and electrophile. Previous X-ray crystallographic studies of some molecules containing a nucleophilic nitrogen atom and electrophilic carbonyl group provided some initial evidence for various degrees of bond formation via initial n ->pi* interactions. Observation of a complete set of points along the trajectory, however, has not yet been attained. In this paper, we present a DFT computational study investigating substituted 2-(dimethylamino)biphenyl-2'-carboxaldehydes as substrates for further examination of n ->pi* interactions and as a potential framework for more complete tracing of the Burgi-Dunitz trajectory. These compounds are particulary suitable for study because of the rotational freedom granted by the C-C bond connecting the two aromatic rings allowing the molecule to choose the degree of interaction between the two complementary groups. The extent of interaction is measured by interatomic distance, NBO second-order perturbative analysis energies, volume of transferred electron density as provided by ETS-NOCV analysis, and differences in energies between models that allow for n ->pi* interactions and those that do not. A series of substituted biphenyls are ultimately identified as future synthetic targets that have maximum potential for providing improved tracing of the Burgi-Dunitz trajectory.
机译:Burgi-Dunitz轨迹沿着亲核体和亲电体之间的键形成路径追踪点。先前对某些包含亲核氮原子和亲电羰基的分子的X射线晶体学研究为通过初始n-> pi *相互作用形成不同程度的键提供了一些初步证据。然而,还没有观察到沿轨迹的完整点集。在本文中,我们提出了一项DFT计算研究,研究取代的2-(二甲氨基)联苯-2'-甲醛作为底物,以进一步检查n-> pi *相互作用,并作为更完整地追踪Burgi-Dunitz轨迹的潜在框架。这些化合物特别适合研究,因为连接两个芳环的C-C键可提供旋转自由度,从而使分子可以选择两个互补基团之间的相互作用程度。相互作用的程度是通过原子间距离,NBO二阶微扰分析能,ETS-NOCV分析提供的转移电子密度的体积以及允许n-> pi *相互作用的模型与进行相互作用的模型之间的能量差来衡量的不。一系列取代的联苯最终被确定为未来的合成目标,它们具有最大的潜力来提供对Burgi-Dunitz轨迹的改进追踪。

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