Krygowski Tadeusz M, Zachara-Horeglad Joanna E, Fowler Patrick W, Lillington Mark
Department of Chemistry, Warsaw University, Pasteura 1, Warsaw, 02-093, Poland.
Phys Chem Chem Phys. 2008 Dec 14;10(46):6979-85. doi: 10.1039/b803142h. Epub 2008 Oct 16.
Quasi-rings constructed as cyclic beta-ketoenol or lithium beta-ketoenolate moieties fused to aromatic molecules such as benzene, naphthalene and phenanthrene have geometric consequences for the conjoined aromatic similar to those caused by fusion of a benzene ring. This similarity is particularly marked in the case of lithium-bonded derivatives. Energies of bond separation reactions and the HOMA (harmonic-oscillator model of aromaticity) geometry-based index of pi-electron delocalisation show further similarities between quasi-rings and benzene. However, application of the ipsocentric approach to calculation of induced current density, shows that neither hydrogen nor lithium quasi-rings support pi-electron ring currents. It is argued that the geometric effects stem from electrostatic interaction of Li(+), and to a lesser extent H(+), with oxygen neighbours, causing a partial equalisation of CO bond lengths and knock-on effects on CC bonds, in the quasi-ring. The observed geometric effects do not arise from aromatic pi-electron delocalisation in the quasi-ring but are closer to the well-known push-pull effect between the electron-donating -OH and electron-accepting -CO groups, leading to reduction in bond-length alternation.
构建为与苯、萘和菲等芳香分子稠合的环状β-酮烯醇或锂β-酮烯醇盐部分的准环,对于相连的芳香体系具有几何效应,类似于苯环稠合所引起的效应。这种相似性在锂键合衍生物的情况下尤为显著。键分离反应的能量以及基于HOMA(芳香性的谐振子模型)几何结构的π电子离域指数表明,准环与苯之间存在进一步的相似性。然而,以本位中心方法计算感应电流密度的结果表明,氢准环和锂准环均不支持π电子环电流。据认为,几何效应源于Li(+)以及在较小程度上H(+)与氧邻位的静电相互作用,导致准环中C-O键长度部分均等化,并对C-C键产生连锁效应。观察到的几何效应并非源于准环中的芳香π电子离域,而是更接近于供电子的-OH基团与吸电子的-CO基团之间众所周知的推-拉效应,导致键长交替减少。