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质子化苯二聚体和三聚体的振动光谱和理论。

Vibrational spectroscopy and theory of the protonated benzene dimer and trimer.

机构信息

Department of Chemistry, University of Georgia, Athens, Georgia 30602-2556, United States.

出版信息

J Phys Chem A. 2012 Jul 5;116(26):7065-73. doi: 10.1021/jp304091h. Epub 2012 Jun 21.

Abstract

Protonated benzene cluster ions, H(C(6)H(6))(2)(+) and H(C(6)H(6))(3)(+), are produced in a pulsed electrical discharge source coupled to a supersonic expansion. Mass-selected complexes are investigated with infrared photodissociation spectroscopy in the 1000-3200 cm(-1) region using the method of argon tagging. The IR spectra of H(C(6)H(6))(2)(+)-Ar and H(C(6)H(6))(3)(+)-Ar contain broad bands in the high frequency region resulting from CH-π hydrogen bonds. Sharp peaks are observed in the fingerprint region arising from the ring modes of both the C(6)H(7)(+) and C(6)H(6) moieties. M06-2X calculations have been performed to investigate the structures and vibrational spectra of energetically low-lying configurations of these complexes. H(C(6)H(6))(2)(+) is predicted to have three nearly isoenergetic conformers: the parallel displaced (PD), T-shaped (TS), and canted (C) structures [Jaeger, H. M.; Schaefer, H. F.; Hohenstein, E. G.; Sherrill, C. D. Comput. Theor. Chem. 2011, 973, 47-52]. A comparison of the experimental dimer spectrum with those predicted for the three isomers suggests an average structure between the TS and PD conformers, which is consistent with the low energy barrier predicted to separate these two structures. No evidence is found for the C dimer even though it lies only 1.2 kcal/mol above the PD dimer. Although the trimer is also computed to have many low lying isomers, the IR spectrum limits the possible species present.

摘要

质子化苯团簇离子,H(C(6)H(6))(2)(+) 和 H(C(6)H(6))(3)(+),在脉冲放电源中产生,该源与超音速膨胀耦合。使用氩标记法,在 1000-3200 cm(-1) 区域,通过红外光解离光谱法对质量选择的配合物进行了研究。H(C(6)H(6))(2)(+)-Ar 和 H(C(6)H(6))(3)(+)-Ar 的 IR 光谱在高频区域包含来自 CH-π氢键的宽带。在指纹区域观察到尖锐的峰,这是由 C(6)H(7)(+)和 C(6)H(6)部分的环模式引起的。进行了 M06-2X 计算,以研究这些配合物的低能构型的结构和振动光谱。H(C(6)H(6))(2)(+) 被预测有三个几乎等能的构象:平行位移 (PD)、T 形 (TS) 和倾斜 (C) 结构[Jaeger,H. M.;Schaefer,H. F.;Hohenstein,E. G.;Sherrill,C. D. Comput. Theor. Chem. 2011,973,47-52]。实验二聚体光谱与三种异构体预测的光谱进行比较表明,平均结构介于 TS 和 PD 构象之间,这与预测这两种结构之间的低能势垒一致。尽管 C 二聚体仅比 PD 二聚体高出 1.2 kcal/mol,但没有发现其存在的证据。尽管三聚体也被计算为具有许多低能异构体,但 IR 光谱限制了可能存在的物种。

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