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推-拉与给体-受体芳香性

Push-pull vs captodative aromaticity.

作者信息

Shainyan Bagrat A, Fettke Anja, Kleinpeter Erich

机构信息

A. E. Favorsky Irkutsk Institute of Chemistry, Siberian Division of Russian Academy of Science, 1 Favorsky Street, 664033 Irkutsk, Russia.

出版信息

J Phys Chem A. 2008 Oct 30;112(43):10895-903. doi: 10.1021/jp804999m. Epub 2008 Oct 4.

Abstract

Vinylogs of fulvalenes with cyclopropenyl and cyclopentadienyl moieties attached either to different carbon atoms ( c-C 3H 2CHCHC 5H 4- c, 7) or to the same carbon atom [XC( c-C 3H 2)( c-C 5H 4), 10] [X = CH 2; C(CN) 2; C(NH 2) 2; C(OCH 2) 2; O; c-C 3H 2; c-C 5H 4; SiH 2; CCl 2] of the double bond inserted between the two rings are examined theoretically at the B3LYP/6-311G(d,p) level. Both types of compounds are shown to possess aromaticity, which was called "push-pull" and "captodative" aromaticity, respectively. For the captodative mesoionic structures XC( c-C 3H 2)( c-C 5H 4), the presence of both the two aromatic moieties and the CC double bond is the necessary and sufficient condition for their existence as energetic minima on the potential energy surface. Aromatic stabilization energy (ASE) was assessed by the use of homodesmotic reactions and heats of hydrogenation. Spatial magnetic criteria (through space NMR shieldings, TSNMRS) of the two types of vinylogous fulvalenes 7 and 10 have been calculated by the GIAO perturbation method employing the nucleus independent chemical shift (NICS) concept of Paul von Rague Schleyer, and visualized as iso-chemical-shielding surfaces (ICSS) of various sizes and directions. TSNMRS values can be successfully employed to visualize and quantify the partial push-pull and captodative aromaticity of both the three- and five-membered ring moieties. In addition, the push -pull effect in compounds 7 and 10 could be quantified by the occupation quotient pi* CC/pi CC of the double bond inserted between the two rings.

摘要

研究了带有环丙烯基和环戊二烯基部分的富瓦烯的插烯物,这些部分分别连接到不同的碳原子(c-C₃H₂CHCHC₅H₄-c,7)或双键插入两个环之间的同一个碳原子[XC(c-C₃H₂)(c-C₅H₄),10][X = CH₂;C(CN)₂;C(NH₂)₂;C(OCH₂)₂;O;c-C₃H₂;c-C₅H₄;SiH₂;CCl₂]上。理论上在B3LYP/6-311G(d,p)水平对这两种类型的化合物进行了研究。结果表明这两种类型的化合物都具有芳香性,分别被称为“推-拉”芳香性和“捕获-给体”芳香性。对于捕获-给体中离子结构XC(c-C₃H₂)(c-C₅H₄),两个芳香部分和碳-碳双键的存在是它们作为势能面上能量极小值存在的充分必要条件。通过使用同系反应和氢化热评估了芳香稳定能(ASE)。采用Paul von Rague Schleyer的核独立化学位移(NICS)概念,通过GIAO微扰方法计算了两种插烯富瓦烯7和10的空间磁判据(通过空间NMR屏蔽,TSNMRS),并可视化为不同大小和方向的等化学屏蔽面(ICSS)。TSNMRS值可以成功地用于可视化和量化三元环和五元环部分的部分推-拉和捕获-给体芳香性。此外,化合物7和10中的推-拉效应可以通过插入两个环之间的双键的占据商π*CC/πCC来量化。

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