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某些稠合 1,3-氮杂膦环化合物反应的实验和理论结果的协同作用。

Synergy between Experimental and Theoretical Results of Some Reactions of Annelated 1,3-Azaphospholes.

机构信息

Department of Chemistry, The IIS University, Jaipur 302020, India.

出版信息

Molecules. 2018 May 27;23(6):1283. doi: 10.3390/molecules23061283.

Abstract

Computational calculations have been used successfully to explain the reactivity of the >C=P- functionality in pyrido-annelated 1,3-azaphospholes. Theoretical investigation at the Density Functional Theory (DFT) level shows that the lone pair of the bridgehead nitrogen atoms is involved in extended conjugation, due to which electron density increases considerably in the five-membered azaphosphole ring. The electron density in the azaphosphole is further enhanced by the presence of an ester group at the 3-position making the >C=P- functionality electron-rich. Thus, 1,3-azaphospholo[5,1-]pyridine, i.e., 2-phosphaindolizine having ester group at the 3-position only does not undergo Diels-Alder (DA) reaction with an electron rich diene, such as 2,3-dimethyl-1,3-butadiene (DMB). However, an ester group at 1-position acts as electron-sink, due to which transfer of the electron density to the >C=P- moiety is checked and DA reaction occurs across the >C=P- functionality. The coordination of the Lewis acid to the carbonyl group at the 3-position raises the activation barrier, while it is lowered remarkably when it is coordinated to the P atom. Furthermore, the attack of 1,3-butadiene on the face of the P-coordinated (-menthoxy)aluminum dichloride complex is a lower activation energy path. Fukui functions could be used to explain relative reactivities of indolizine and 2-phosphaindolizine towards electrophilic substitution reactions.

摘要

计算化学已成功用于解释吡啶并稠合 1,3-氮杂膦的 >C=P-官能团的反应性。密度泛函理论 (DFT) 水平的理论研究表明,桥头氮原子的孤对参与扩展共轭,由此导致五元氮杂膦环中的电子密度大大增加。由于在 3 位存在酯基,使 >C=P-官能团富电子,氮杂膦中的电子密度进一步增强。因此,只有在 3 位具有酯基的 1,3-氮杂[5,1-]吡啶,即 2-磷吲哚嗪,不会与富电子二烯(如 2,3-二甲基-1,3-丁二烯 (DMB))发生 Diels-Alder (DA) 反应。然而,1 位的酯基充当电子受体,由此阻止了电子密度向 >C=P-部分的转移,并且 DA 反应发生在 >C=P-官能团上。路易斯酸与 3 位羰基的配位会增加活化能垒,而与 P 原子配位时则会显著降低。此外,1,3-丁二烯对 P 配位的(-薄荷氧基)铝二氯化物配合物的面的攻击是一条较低的活化能路径。福井函数可用于解释吲哚嗪和 2-磷吲哚嗪对亲电取代反应的相对反应性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b393/6099638/0eca02b42780/molecules-23-01283-sch001.jpg

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