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The effect of hydrogen bonding on torsional dynamics: A combined far-infrared jet and matrix isolation study of methanol dimer.

机译:氢键对扭转动力学的影响:甲醇二聚体的组合远红外射流和基质分离研究。

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摘要

The effect of strong intermolecular hydrogen bonding on torsional degrees of freedom is investigated by far-infrared absorption spectroscopy for different methanol dimer isotopologues isolated in supersonic jet expansions or embedded in inert neon matrices at low temperatures. For the vacuum-isolated and Ne-embedded methanol dimer, the hydrogen bond OH librational mode of the donor subunit is finally observed at ∼560 cm(-1), blue-shifted by more than 300 cm(-1) relative to the OH torsional fundamental of the free methanol monomer. The OH torsional mode of the acceptor embedded in neon is observed at ∼286 cm(-1). The experimental findings are held against harmonic predictions from local coupled-cluster methods with single and double excitations and a perturbative treatment of triple excitations [LCCSD(T)] and anharmonic. VPT2 corrections at canonical MP2 and density functional theory (DFT) levels in order to quantify the contribution of vibrational anharmonicity for this important class of intermolecular hydrogen bond vibrational motion.
机译:通过远红外吸收光谱研究了低温下超声速射流扩展中或嵌入惰性氖气基质中的不同甲醇二聚体同位素的远红外吸收光谱,研究了强分子间氢键对扭转自由度的影响。对于真空隔离和嵌入Ne的甲醇二聚体,最终在〜560 cm(-1)处观察到供体亚基的氢键OH释放模式,相对于OH蓝移了300 cm(-1)以上游离甲醇单体的扭转基础。嵌入氖气中的受体的OH扭转模式在286 cm(-1)处观察到。实验结果与单次和两次激发以及三次激发[LCCSD(T)]和非谐波的微扰处理的局部耦合簇方法的谐波预测不符。在规范MP2和密度泛函理论(DFT)级别上进行VPT2校正,以便量化对于这一重要的分子间氢键振动运动的振动非谐性的贡献。

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