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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Microwave Spectrum, Conformational Equilibrium, Intramolecular Hydrogen Bonding, Tunneling, and Quantum Chemical Calculations for 1-Ethenylcyclopropan-1-ol
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Microwave Spectrum, Conformational Equilibrium, Intramolecular Hydrogen Bonding, Tunneling, and Quantum Chemical Calculations for 1-Ethenylcyclopropan-1-ol

机译:1-乙烯基环丙烷-1-醇的微波光谱,构象平衡,分子内氢键,隧穿和量子化学计算

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摘要

The microwave spectra of 1-ethenylcyclopropan-1-ol, (CH_2)_2C(OH)C=CH_2, and one deuterated species, (CH_2)_2C(OD)C=CH_2, have been investigated in the 11.0-60.0 GHz region. The (ac, ap)- and (ac, scl)-conformers denoted Syn 1 and Skew 1 were assigned. Each of these two forms is stabilized with an intramolecular hydrogen bond formed between the hydrogen atom of the hydroxyl group and the π electrons of the double bond. In the Syn 1 rotamer the C=C-C-O chain of atoms takes a syn conformation (dihedral angle = -2.6°) and the H-O-C-C= link of atoms is gauche (dihedral angle = -67.2° from syn). The C=C-C-O link of atoms takes a skew conformation (dihedral angle = 132.1° from syn) in the Skew 1 rotamer, while the H-O-C-C= dihedral angle is -67.1°. Syn 1 is preferred by 4.9(6) kJ mol~(-1) relative to Skew 1. Syn 1 is virtually a hybrid of the most stable conformer of unsubstituted ethenylcyclopropane, and unsubstituted cyclopropanol, Skew 1, is the corresponding hybrid of the second rotamer of ethenylcyclopropane and the most stable one of cyclopropanol. The spectrum of Syn 1 is perturbed by tunneling of the hydroxyl group. An analysis yielded 2280.184(60) MHz for the tunneling frequency and 39.82(19) MHz for the Coriolis coupling term μ_(ca) for the normal species. The corresponding values were 72.401(27) and 5.2(10) MHz, respectively, for the deuterated species. A potential function for the tunneling motion consisting of three cosine terms was found to have the following potential constants: V_1 = -918.2, V_2 = -900.0, and V_3 = 418.0 cm~(-1). This double-minimum function yields a barrier of 16.6(50) kJ mol~(-1) at the anti position and 10.6(30) kJ mol~(-1) at syn. The microwave work has been assisted by ab initio computations at the MP2/cc-pVTZ level of theory as well as density functional theory calculations at the B3LYP/6-31G~* level. These calculations indicate that there are only three stable rotameric forms of the molecule. The gas-phase IR spectrum in the O-H stretching region revealed a broad and complex band red-shifted by roughly 50 cm~(-1) presumably as a result of internal hydrogen bonding.
机译:在11.0-60.0 GHz范围内研究了1-乙烯基环丙烷-1-醇(CH_2)_2C(OH)C = CH_2和一种氘代物质(CH_2)_2C(OD)C = CH_2的微波光谱。分配了分别表示为Syn 1和Skew 1的(ac,ap)-和(ac,scl)-构型。这两种形式中的每一种都被在羟基的氢原子和双键的π电子之间形成的分子内氢键稳定。在Syn 1旋转异构体中,原子的C = C-C-O链为syn构象(二面角= -2.6°),原子的H-O-C-C =链环为长条状(与syn的二面角= -67.2°)。原子的C = C-C-O键在Skew 1旋转异构体中具有倾斜构象(二面角=距syn的132.1°),而H-O-C-C =二面角为-67.1°。相对于偏斜1,Syn 1优选4.9(6)kJ mol〜(-1)。Syn 1实际上是最稳定的未取代乙烯基环丙烷构象的杂合物,而未取代的环丙醇Skew 1是第二取代基的相应杂合物。乙烯基环丙烷的旋转异构体和最稳定的环丙醇之一。 Syn 1的光谱受羟基隧穿的干扰。分析得出正常物种的隧穿频率为2280.184(60)MHz,科里奥利耦合项μ_(ca)为39.82(19)MHz。氘代物质的相应值分别为72.401(27)和5.2(10)MHz。发现由三个余弦项构成的隧穿运动的势函数具有以下势常数:V_1 = -918.2,V_2 = -900.0和V_3 = 418.0 cm〜(-1)。这个双重最小函数在反位置产生了16.6(50)kJ mol〜(-1)的势垒,而在反位置产生了10.6(30)kJ mol〜(-1)的势垒。微波工作得到了MP2 / cc-pVTZ理论水平的从头算算以及B3LYP / 6-31G〜*水平的密度泛函理论计算的协助。这些计算表明该分子只有三种稳定的旋转异构体形式。在O-H拉伸区中的气相红外光谱显示,宽谱带和复杂谱带发生了大约50 cm〜(-1)的红移,这可能是内部氢键的结果。

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