首页> 外文期刊>INFOR >A theoretical (DFT, GIAO-NMR, NICS) study of the carbocations and oxidation dications from azulenes, homoazulene, benzazulenes, benzohomoazulenes, and the isomeric azulenoazulenes
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A theoretical (DFT, GIAO-NMR, NICS) study of the carbocations and oxidation dications from azulenes, homoazulene, benzazulenes, benzohomoazulenes, and the isomeric azulenoazulenes

机译:理论研究(DFT,GIAO-NMR,NICS)研究了天青石,高azulene,苯并恶唑,苯并高azulenes和异构的azulenoazulenes的碳正离子和氧化指示

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摘要

Protonation of parent azulene (1), homoazulene (8), representative isomeric benzazulenes (9, 9A, and 9B), and benzohomoazulenes (10, 10A, and 10B) as well as the mono- and diprotonation of isomeric azulenoazulenes (11-16) were studied by DFT at the B3LYP/6-31G(d) level. The most likely carbocations were identified based on relative protonation energies. For comparison, complete experimental ~(13)C NMR data were obtained for parent azulenium ion 1H~+ and guaiazulenium ion 2H~+ in TFA. The oxidation dications derived from benzazulenes (9, 9A, and 9B), benzohomoazulenes (10, 10A, and 10B) and azulenoazulenes (11-16) were also investigated. For azulenoazulene dications the singlet and triplet states are both minima, but except for 11~(2+) and 13~(2+), the triplet states are higher in energy. Structural/geometrical changes in the carbocations were examined. GIAO-NMR, NPA charges (and changes in charges), and NICS (and ΔNICS) were employed to compute the NMR chemical shifts (Δδ~(13)C values) in order to derive charge delocalization maps and to gauge relative aromaticitylantiaromaticity in the energetically most favored carbocations and oxidation dications. The emerging trends are discussed and compared. Creation of tropylium or homotropylium entities in the carbocations (monoprotonated) and carbodications (diprotonated) is identified as an important driving force governing the protonation outcomes. Consideration of the AM1-derived ΔΔH_f values (and the DFT-derived ΔΔG values) suggests that the two-electron oxidation of azulenoazulenes should be experimentally feasible. Given their antiaromatic (paratropic) character, azulenoazulene dications represent interesting targets for NMR study. GIAO-derived charge delocalization mapping allows the most likely sites for nucleophilic attack on the dications to be identified.
机译:母体azulene(1),homazulene(8),代表性的异构苯并azulesules(9、9A和9B)和苯并高azulenes(10、10A和10B)的质子化,以及azulnoazulenes(11-16)的单和双质子化)是通过DFT在B3LYP / 6-31G(d)水平上进行研究的。根据相对质子化能确定最可能的碳正离子。为了进行比较,在TFA中获得了母体Azulenium离子1H〜+和愈创愈创木酚根离子2H〜+的完整实验〜(13)C NMR数据。还研究了衍生自苯并azulenes(9、9A和9B),苯并高azulenes(10、10A和10B)和azulenoazulenes(11-16)的氧化指示剂。对于azulenoazulene指示,单线态和三线态都极小,但除了11〜(2+)和13〜(2+)以外,三线态的能量更高。检查了碳正离子的结构/几何变化。 GIAO-NMR,NPA电荷(和电荷变化)和NICS(和ΔNICS)用于计算NMR化学位移(Δδ〜(13)C值),以得出电荷离域图并测量相对芳构性能量最受青睐的碳正离子和氧化离子。对新兴趋势进行了讨论和比较。在碳正离子化(单质子化)和碳正离子化(双质子化)中创建对trop基或同养基体是控制质子化结果的重要驱动力。考虑到AM1衍生的ΔΔH_f值(和DFT衍生的ΔΔG值)表明,azulenoazulenes的双电子氧化在实验上应该是可行的。鉴于它们的抗芳香族(顺同性)特性,阿祖鲁azulene指示剂是NMR研究的有趣目标。 GIAO衍生的电荷离域作图可确定对药物进行亲核攻击的最可能位点。

著录项

  • 来源
    《INFOR》 |2003年第17期|p.3078-3093|共16页
  • 作者单位

    Department of Energy and Hydrocarbon Chemistry, Kyoto University, Kyoto, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 计算技术、计算机技术;
  • 关键词

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