Boda Łukasz, Boczar Marek, Wójcik Marek J, Nakajima Takahito
Faculty of Chemistry, Jagiellonian University, Gronostajowa 2, 30-387 Kraków, Poland.
RIKEN, Center for Computational Science, 7-1-26, Minatojima-minami-machi, Chuo-ku, Kobe, Hyogo 650-0047, Japan.
J Phys Chem A. 2021 Aug 19;125(32):6902-6912. doi: 10.1021/acs.jpca.1c02972. Epub 2021 Aug 5.
Proton tunneling in the hydrogen-bonded imidazole-imidazolium complex ion has been studied theoretically. CASSCF/6-311++G(d,p) calculations concerning geometry optimization and vibrational frequencies have been carried out for equilibrium and transition state structures of the system. Two-dimensional double-well model potentials were constructed on the basis of results and used to analyze the proton dynamics in the hydrogen bond and the influence of the excitation of low-frequency hydrogen-bond vibrations on the proton tunneling splittings. The energy of tunneling-split vibrational sublevels of the high-frequency tunneling mode have been calculated for its ground and first excited vibrational state for the series of excitations of the coupled low-frequency intramolecular hydrogen-bond modes. The promoting and suppressing effect of the low-frequency modes on the proton splittings was shown in the ground and first excited vibrational state of the tunneling mode. The vibrational sublevels form the two separate semicontinuous bands between which the absorption transitions may occur. This mechanism explains the experimentally observed splitting and doublet-component broadening of the high-frequency N-H stretching infrared (IR) absorption band.
对氢键连接的咪唑 - 咪唑鎓络合离子中的质子隧穿进行了理论研究。针对该体系的平衡态和过渡态结构,进行了关于几何优化和振动频率的CASSCF/6 - 311++G(d,p)计算。基于计算结果构建了二维双阱模型势,并用于分析氢键中的质子动力学以及低频氢键振动激发对质子隧穿分裂的影响。对于耦合的低频分子内氢键模式的一系列激发,计算了高频隧穿模式的隧穿分裂振动子能级在其基态和第一激发振动态的能量。在隧穿模式的基态和第一激发振动态中,展示了低频模式对质子分裂的促进和抑制作用。振动子能级形成两个独立的半连续带,在它们之间可能发生吸收跃迁。该机制解释了实验观察到的高频N - H伸缩红外(IR)吸收带的分裂和双峰组分展宽。