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质子结合氨基酸二聚体的非谐振动光谱计算。

Anharmonic vibrational spectroscopy calculations for proton-bound amino acid dimers.

机构信息

Department of Chemistry, University of California at Irvine, Irvine, California 92697, USA.

出版信息

J Phys Chem A. 2009 Mar 12;113(10):1905-12. doi: 10.1021/jp807106h.

Abstract

Results of anharmonic frequency calculations carried out for GlysLysH(+) and GlyGlyH(+) are presented and compared to gas phase electrospray ionization (ESI) spectroscopy experiments. Anharmonic frequencies are obtained via correlation-corrected vibrational self-consistent field (CC-VSCF) calculations. The potential used is based on the PM3 semiempirical electronic structure method, but improved by fitting to ab initio MP2 calculations at the harmonic level. The key results are as follows: (1) Hydrogens acting as intermolecular bridges have very anharmonic stretches whose frequencies cannot be reliably predicted by the harmonic approximation. An example is the carboxylate bound NH(3)(+) stretch. (2) The computed anharmonic vibrational frequencies are in good agreement with experiment and provides a very large improvement over harmonic frequencies especially for OH and NH stretches. For example the calculated CC-VSCF frequencies of GlysLysH(+) and GlyGlyH(+) have overall average deviations of 1.35% and 1.48% only, respectively, from experiment. (3) The harmonic OH bond stretching frequency deviates by 6.64% from experiments. The CC-VSCF calculations reduce this deviation by more than an order of magnitude to 0.56%. The anharmonicity of the OH stretch is intrinsic, rather than due to coupling with other modes. (4) Anharmonic coupling between the NH(3)(+) stretch and several other normal modes is strong, and provide the main contribution for the anharmonicity of this mode. Properties of the potential energy surfaces of the proton-bound complexes are briefly discussed in light of the results.

摘要

给出了 GlysLysH(+) 和 GlyGlyH(+) 的非谐频率计算结果,并与气相电喷雾电离(ESI)光谱实验进行了比较。非谐频率是通过相关校正的振动自洽场(CC-VSCF)计算得到的。所使用的势能基于 PM3 半经验电子结构方法,但通过拟合到谐频水平的从头算 MP2 计算进行了改进。主要结果如下:(1)作为分子间桥的氢具有非常非谐的伸缩,其频率不能通过谐频近似可靠地预测。例如,羧酸盐结合的 NH(3)(+)伸缩。(2)计算出的非谐振动频率与实验非常吻合,与谐频相比有很大的改进,特别是对于 OH 和 NH 伸缩。例如,GlysLysH(+)和 GlyGlyH(+)的计算 CC-VSCF 频率与实验相比,总体平均偏差仅分别为 1.35%和 1.48%。(3)OH 键伸缩的谐频偏差为 6.64%。CC-VSCF 计算将这种偏差降低了一个数量级以上,达到 0.56%。OH 伸缩的非谐性是内在的,而不是由于与其他模式的耦合。(4)NH(3)(+)伸缩与几个其他正则模式之间的非谐耦合很强,是该模式非谐性的主要贡献。根据结果简要讨论了质子结合复合物的势能面性质。

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