分离分子中的小空间效应:烷基取代的苯并腈

O. Exner, S. Böhm, M. Decouzon, J. Gal, P. Maria
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引用次数: 1

摘要

研究了一系列七个烷基取代苯并腈作为小空间效应(范德华张力)的模型,排除了共振引起的任何空间抑制。计算了B3LYP/6-311+G(d,p)能级的能量,并用傅里叶变换离子回旋共振测量了部分化合物的气相碱度。通过等密度反应分别对中性分子和质子化形式的取代基效应进行了评价,并通过比较邻位衍生物和对位衍生物,将取代基效应分解为极性和立体效应。一个或两个邻甲基具有相对较小的空间效应,几乎完全以质子化形式运作,导致碱度减弱。邻位叔丁基在质子化和非质子化形式下都有很强的空间效应,并表现为很强的几何畸变。对碱度的影响是两个大值的小差,是碱度强化。在这种情况下,酸碱性质是取代基效应的一个很差的度量,不能用简单的术语来解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Small steric effects in isolated molecules: alkyl-substituted benzonitriles
A series of seven alkyl-substituted benzonitriles was investigated as a model for small steric effects (van der Waals tension) excluding any steric inhibition due to resonance. The energies were calculated at a B3LYP/6-311+G(d,p) level and the gas-phase basicities of some compounds were measured by Fourier-transform ion cyclotron resonance. Substituent effects were evaluated separately for neutral molecules and protonated forms by means of isodesmic reactions, and dissected into polar and steric effects by comparing ortho and para derivatives. One or two ortho methyl groups have a relatively small steric effect operating almost exclusively in the protonated form which leads to weakened basicity. An ortho tert-butyl group exerts a strong steric effect both in the protonated and nonprotonated forms, manifested also in a rather strong distortion of geometry. The effect on basicity is then a small difference of two large values and is base strengthening. Acid–base properties are in such cases a poor measure of substituent effects and cannot be interpreted in simple terms.
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