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A combined theoretical and experimental study of phenol-(acetylene)(n) (n <= 7) clusters

机译:苯酚(乙炔)(n)(n <= 7)簇的组合理论和实验研究

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Structures and vibrational spectra of phenol-(acetylene)(n) (Ph(Ac)(n)) clusters are studied by a combination of theoretical calculations and infrared (IR) spectroscopy. The molecular electrostatic potential features are utilized for generating trial geometries of the medium-sized Ph(Ac)(n) (n = 1, 2, 4, 6, and 7) clusters. These initial geometries are subjected to geometry optimization within the second-order Moller-Plesset (MP2) theory, employing correlation consistent aug-cc-pVDZ (aVDZ) basis set. Minimal nature of the reported structures is confirmed by doing vibrational frequency run at MP2/aVDZ level of theory using full calculations for n = 1 and 2 and employing grafting based molecular tailoring approach for the n = 4, 6, and 7. Several isomers for n >= 4 are found to lie in an energy window of 1 kcal mol(-1) of each other. Considering the formidability of MP2 level investigation for the large number of isomers for n = 6 and 7, B97-D level theory is used for studying their energetics and IR spectra. It is seen that the number of energetically close isomers increases with increasing n. Moderately size-selected IR spectra of Ph(Ac)(n) (n = 4 and 7), prepared by a supersonic jet expansion, are measured for the acetylenic C-H and phenolic O-H stretch regions by infrared-ultraviolet (IR-UV) double resonance spectroscopy combined with time-of-flight mass spectrometry. Asymmetric line shape of the C-H stretch band and remarkable line broadening and weakening of the O-H stretch band are noteworthy features of the observed spectra. These findings of the experimental spectra are explained by the theoretical studies. The averaging of the vibrational spectrum of low-lying isomers of the Ph(Ac)(n) clusters lying in a narrow energy range is found to be responsible for the broadening and weakening of the O-H band. Published by AIP Publishing.
机译:通过理论计算和红外(IR)光谱的组合,研究了酚(乙炔)(乙炔)(N)(pH(AC)(N))簇的结构和振动光谱。分子静电电位特征用于产生中等大小的pH(AC)(N)(N = 1,2,4,6和7)簇的试验几何物。这些初始几何形状在二阶Moller-Plesset(MP2)理论内进行几何优化,采用相关的AUG-CC-PVDZ(AVDZ)基础集。通过使用N = 1和2的完全计算,通过在MP2 / AVDZ理论上进行振动频率运行来确认报告的结构的最小性,并采用基于嫁接的N = 4,6和7.几个异构体的分子剪裁方法n> = 4被发现位于彼此的1kcal摩尔(-1)的能量窗口中。考虑到N = 6和7的大量异构体的MP2水平研究的植入性,用于研究其能量和IR光谱的B97-D电平理论。可以看出,随着n的增加,能量紧密的异构体的数量增加。通过超声波喷射膨胀制备的pH(AC)(n)(n)(n = 4和7)的适度尺寸选择的IR光谱法通过红外紫外线(ir-uv)双重测量乙酰亚基CH和酚醛oh拉伸区共振光谱与飞行时间质谱相结合。 C-H拉伸带的不对称线形状和O-H拉伸带的显着线宽和弱化是观察到的光谱的值得注意的特征。通过理论研究解释了实验光谱的这些发现。发现在狭窄的能量范围内的pH(AC)(n)(n)簇的低位异构体的振动谱的平均是负责O-H频段的展大和弱化。通过AIP发布发布。

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