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首页> 外文期刊>Berichte der Bunsengesellschaft fur Physikalische Chemie >The Effect of the Torsional Barrier Height on the Acceleration of Intramolecular Vibrational Relaxation (IVR) by Molecular Flexibility
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The Effect of the Torsional Barrier Height on the Acceleration of Intramolecular Vibrational Relaxation (IVR) by Molecular Flexibility

机译:扭转壁垒高度对分子内柔性加速分子内振动弛豫(IVR)的影响

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摘要

Previous work by the present authors (Can. J. Chem. 72, 652 (1994)) pointed out the acceleration of IVR in flexible molecules when the prepared vibration is close to the centre of flexibility (COF). A COF was defined as a bond about which hindered internal rotation can occur thereby giving rise to molecular flexibility. Here, it is shown that the rate of IVR is inversely correlated with the height of the barrier to internal rotation for systems in which the prepared vibration is adjacent to the COF. In ethanol and hydrogen peroxide the barriers are low (≈ 380 cm~(-1)) and the relaxation of the adjacent O-H vibration is fast (4 to 26 ps). On the other hand, higher barrier torsions (1100 to 1700 cm~(-1)) adjacent to the chromophore in 1-butyne, 2-fluoroethanol, and 1,2-di-fluoroethane give rise to much longer IVR lifetimes (270 to 565 ps). Most of the IVR lifetimes used in this paper were derived from discretely resolved spectra in which a bright state transition is fragmented into a clump of molecular eigenstates; the remainder are from rotationally selected double resonance spectra. An algorithm is described for the derivation of consistent IVR lifetimes for coupling cases ranging from intermediate down to the very sparse limit where only a few perturbing states are explicitly observed in the spectrum.
机译:本作者先前的工作(Can。J. Chem。72,652(1994))指出,当准备的振动接近柔性中心(COF)时,IVR在柔性分子中的加速。 COF被定义为键,围绕该键可发生受阻的内部旋转,从而引起分子柔性。在这里,对于准备好的振动与COF相邻的系统,表明IVR的速率与内部旋转屏障的高度成反比。在乙醇和过氧化氢中,势垒较低(≈380 cm〜(-1)),相邻O-H振动的弛豫很快(4到26 ps)。另一方面,与1-丁炔,2-氟乙醇和1,2-二氟乙烷中的发色团相邻的较高的阻隔扭力(1100至1700 cm〜(-1))导致IVR寿命更长(270至565 ps)。本文中使用的大部分IVR寿命均来自离散分辨的光谱,在该光谱中,亮态跃迁被碎片化为分子本征态团;其余的来自旋转选择的双共振谱。描述了一种算法,用于推导一致的IVR寿命,适用于从中级到非常稀疏的极限耦合情况,在这种稀疏极限中,在光谱中仅观察到一些干扰状态。

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