首页> 外文期刊>Journal of Molecular Structure >The conversion of 3- and 4-hydroxybenzonitriles (m- and p-cyanophenols) into oxyanions, followed by IR spectra, ab initio and density functional calculations
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The conversion of 3- and 4-hydroxybenzonitriles (m- and p-cyanophenols) into oxyanions, followed by IR spectra, ab initio and density functional calculations

机译:将3-和4-羟基苄腈(间氰和对氰酚)转化为氧阴离子,然后进行IR光谱,从头算和密度泛函计算

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The conversion of 3- and 4-hydroxybenzonitriles (m- and p-cyanophenols) into oxyanions has been followed by IR spectra, ab initio HF, MP2 6-31G(d) and density functional BLYP, B3LYP 6-31G(d) force field calculations. In a general agreement between theory and experiment, the conversion causes a 34 cm(-1) frequency decrease in the cyano stretching band, 3.2-fold increase in its integrated intensity and other essential spectral changes in the para-isomer; for the meta-one the corresponding values are 13 cm(-1) and 2.3-fold, respectively. According to the calculations, both molecule and anion of 4-hydroxybenzonitrile are more stable (due to the polar resonance) than the corresponding meta-substituted species. The strongest structural changes, caused by deprotonation, are the 0.105 Angstrom shortenings of the Ph-O bonds, 0.054 Angstrom lengthenings (mean values) of the adjacent CC bonds and essential bond angle changes in the phenylene rings near the oxyanionic centers. In the case of para-isomer these changes are related to the formation of a quasi-para-quinonoidal structure of the phenylene ring in the oxyanion. According to the electronic density analysis, a bit less (Mulliken) or a bit more (natural bond orbital) than halves of the anionic charges remain localized at the oxyanionic centers. Hydrogen bonds have also been discussed. (C) 2003 Elsevier B.V. All rights reserved.
机译:3-和4-羟基苯甲腈(间-和对-氰基苯酚)到氧阴离子的转化已经进行了红外光谱,从头算HF,MP2 6-31G(d)和密度函数BLYP,B3LYP 6-31G(d)的作用现场计算。在理论和实验之间的一般协议中,这种转换会导致氰基拉伸带的频率降低34 cm(-1),其集成强度增加3.2倍,对位异构体的其他光谱变化也是如此;对于meta-one,相应的值分别为13 cm(-1)和2.3倍。根据计算,4-羟基苄腈的分子和阴离子都比相应的间位取代物种更稳定(由于极性共振)。由去质子化引起的最强烈的结构变化是Ph-O键缩短0.105埃,相邻CC键的0.054埃延长(均值)和氧阴离子中心附近的亚苯基环的基本键角变化。在对位异构体的情况下,这些变化与氧阴离子中亚苯基环的准对醌结构的形成有关。根据电子密度分析,比一半的阴离子电荷少(Mulliken)或多一点(天然键轨道)保持在氧阴离子中心。还讨论了氢键。 (C)2003 Elsevier B.V.保留所有权利。

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