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(C3H9)3Si-C≡C-H 的 C-H 振动跃迁、能级和强度的相移腔衰荡和傅里叶变换红外测量。

Phase shift cavity ring down and Fourier transform infrared measurements of C-H vibrational transitions, energy levels, and intensities of (CH3)3Si-C≡C-H.

机构信息

Department of Chemistry and Biochemistry, Baylor University, Waco, Texas 76706, USA.

出版信息

J Chem Phys. 2013 Jul 7;139(1):014311. doi: 10.1063/1.4812356.

Abstract

Phase shift cavity ring down and Fourier transform IR techniques have been used to observe the C-H stretch fundamental and overtone absorptions of the acetylenic (Δυ = 1-5) and methyl (Δυ = 1-6) C-H bonds of trimethyl-silyl-acetylene [(CH3)3CSi≡CH] at 295 K. Harmonic frequencies ω(ν1), ω(a), and ω(s) and anharmonicities x(ν1), ω(a)x(a), ω(s)x(s) were calculated for the acetylenic, methyl out-of-plane, and methyl in-plane C-H bonds, respectively. The harmonically coupled anharmonic oscillator (HCAO) model was used to determine the overtone energy levels and assign the absorption bands to vibrational transitions of methyl C-H bonds. A hot band, assigned as υν1 + ν24 - ν24 is observed for transitions with Δυ = 1-5 in a region near the acetylenic stretch. The intensity of the hot band is reduced considerably at 240 K. The strength of a Fermi resonance between C-Ha transition (υν(a)) and the combination band ((υ-1)ν(a) + 2ν(bend)) with (υ = 3-6) was calculated using the experimental perturbed energies and relative intensities. The main bands are separated by computer deconvolution and are integrated at each level to get the experimental band strengths. For methyl absorptions, the dipole moment function is expanded as a function of two C-H stretching coordinates and the intensities are calculated in terms of the HCAO model where only the C-H modes are considered. Acetylenic intensities are derived with a one dimensional dipole moment function. The expansion coefficients are obtained from molecular orbital calculations. The intensities are calculated without using adjustable parameters and they are of the same order of magnitude of the experimental intensities for all C-H transitions.

摘要

相移腔衰荡和傅里叶变换红外技术已被用于观察 295 K 下三甲基甲硅烷基乙炔[(CH3)3CSi≡CH]中炔烃(Δυ = 1-5)和甲基(Δυ = 1-6)C-H 键的 C-H 伸缩基频和泛频吸收。分别计算了炔烃、甲基面外、甲基面内 C-H 键的谐频ω(ν1)、ω(a)和ω(s)以及非谐性 x(ν1)、ω(a)x(a)、ω(s)x(s)。谐和耦合非谐振子(HCAO)模型用于确定倍频能级,并将吸收带分配给甲基 C-H 键的振动跃迁。在一个靠近炔烃伸展的区域,观察到Δυ = 1-5 的跃迁的一个热带,分配为 υν1 + ν24 - ν24。在 240 K 时,热带的强度显著降低。使用实验扰动能量和相对强度计算了 C-Ha 跃迁(υν(a))和组合带((υ-1)ν(a) + 2ν(bend))之间的费米共振的强度(υ = 3-6)。主要带通过计算机反卷积分离,并在每个能级积分以获得实验带强度。对于甲基吸收,偶极矩函数展开为两个 C-H 伸缩坐标的函数,并且根据 HCAO 模型计算强度,其中仅考虑 C-H 模式。炔烃强度使用一维偶极矩函数推导。扩展系数从分子轨道计算中获得。强度是在不使用可调参数的情况下计算的,对于所有 C-H 跃迁,它们与实验强度处于同一数量级。

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