Boczar Marek, Boda Lukasz, Wójcik Marek J
Faculty of Chemistry, Jagiellonian University, Ingardena 3, 30-060 Kraków, Poland.
J Chem Phys. 2007 Aug 28;127(8):084307. doi: 10.1063/1.2766951.
Theoretical model for vibrational interactions in the hydrogen-bonded dimer of benzoic acid is presented. The model takes into account anharmonic-type couplings between the high-frequency O-H and the low-frequency O[cdots, three dots, centered]O stretching vibrations in two hydrogen bonds, resonance interactions (Davydov coupling) between two hydrogen bonds in the dimer, and Fermi resonance between the O-H stretching fundamental and the first overtone of the O-H in-plane bending vibrations. The vibrational Hamiltonians and selection rules for the C(2h) geometry in the S(0) state and for the C(s) in-plane bent geometry in the S(1) state of the dimer are derived. The model is used for theoretical simulation of the O-H stretching IR absorption bands of benzoic acid dimers in the gas phase in the electronic ground and first excited singlet states. Ab initio CIS and CIS(D)6-311++G(d,p) calculations have been performed to determine geometry, frequencies, and excited state energies of benzoic acid dimer in the S(1) state.
本文提出了苯甲酸氢键二聚体中振动相互作用的理论模型。该模型考虑了两个氢键中高频O-H与低频O···O伸缩振动之间的非谐型耦合、二聚体中两个氢键之间的共振相互作用(达维多夫耦合)以及O-H伸缩基频与O-H面内弯曲振动的第一泛频之间的费米共振。推导了二聚体在S(0)态的C(2h)几何结构以及在S(1)态的C(s)面内弯曲几何结构的振动哈密顿量和选择规则。该模型用于对电子基态和第一激发单重态气相中苯甲酸二聚体的O-H伸缩红外吸收带进行理论模拟。已进行了从头算CIS和CIS(D)/6-311++G(d,p)计算,以确定S(1)态苯甲酸二聚体的几何结构、频率和激发态能量。