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n→π* 相互作用能否为天然存在的头孢菌素提供热力学稳定性?

Can an n → π* Interaction Provide Thermodynamic Stability to Naturally Occurring Cephalosporolides?

机构信息

Centro de Investigación de la Facultad de Ciencias Químicas , Benemérita Universidad Autónoma de Puebla (BUAP) , 14 Sur Esq. San Claudio, Col. San Manuel , 72570 Puebla , México.

Centro Conjunto de Investigación en Química Sustentable UAEM-UNAM , Personal de la UNAM , Carretera Km. 14.5, Unidad San Cayetano, Toluca - Atlacomulco , 50200 Toluca de Lerdo , México.

出版信息

J Org Chem. 2019 Feb 15;84(4):2126-2132. doi: 10.1021/acs.joc.8b03116. Epub 2019 Jan 31.

Abstract

The stereocontrolled synthesis of naturally occurring products containing a 5,5-spiroketal molecular structure represents a major synthetic problem. Moreover, in a previous work, the stereocontrolled synthesis of cephalosporolide E (ceph E), which presumably was obtained from its epimer congener (ceph F) through an acid-mediated equilibration process, was reported. Consequently, we performed a theoretical investigation to provide relevant information regarding the title question, and it was found that the higher thermodynamic stability of ceph E, relative to ceph F, is caused by an n → π* interaction between a lone electron pair of the oxygen atom of the spiroketal ring (n) and the antibonding orbital of the carbonyl group (π*). Although similar stereoelectronic interactions have been disclosed in other molecular structures, its presence in ceph E, and very likely in other related naturally occurring products, represents a novel nonanomeric stabilizing effect that should be introduced into the chemical literature.

摘要

立体选择性合成含有 5,5-螺缩酮分子结构的天然产物是一个主要的合成问题。此外,在之前的工作中,报道了头孢洛利德 E(ceph E)的立体选择性合成,推测它是通过酸介导的平衡过程从其差向异构体(ceph F)获得的。因此,我们进行了理论研究,提供了有关标题问题的相关信息,结果发现,ceph E 相对于 ceph F 的热力学稳定性更高,是由于螺缩酮环氧原子的孤电子对(n)和羰基的反键轨道(π*)之间的 n → π* 相互作用所致。尽管在其他分子结构中已经揭示了类似的立体电子相互作用,但它在 ceph E 中的存在,以及很可能在其他相关天然产物中的存在,代表了一种新的非端基稳定效应,应该引入化学文献中。

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