Padmanaban R, Mahapatra S
School of Chemistry, University of Hyderabad, Hyderabad 500 046, India.
J Chem Phys. 2004 Oct 22;121(16):7681-91. doi: 10.1063/1.1794655.
The channel specific and initial state-selected reaction cross section and temperature-dependent rate constant for the title system is calculated with the aid of a time-dependent wave-packet approach and using the ab initio potential energy surface of Dunne et al. [Chem. Phys. Lett. 336, 1 (2001)]. All partial-wave contributions up to the total angular momentum J=74 are explicitly calculated within the coupled states (CS) approximation. Companion calculations are also carried out employing the standard as well as the uniform J-shifting (JS) approximation. The overall variation of reaction cross sections corresponds well to the behavior of a barrierless reaction. The hydrogen exchange channel yielding HLi+H products is seen to be more favored over the HLi depletion channel yielding Li+H(2) products at low and moderate collision energies. Sharp resonance features are observed in the cross-section results for the HLi depletion channel at low energies. Resonance features in the reaction cross sections average out with various partial-wave contributions, when compared to the same observed in the individual reaction probability curve. Except near the onset of the reaction, the vibrational and rotational excitation of the reagent HLi, in general, does not dramatically influence the reactivity of either channel. The thermal rate constants calculated up to 4000 K show nearly Arrhenius type behavior. The rate constant decreases with vibrational excitation of the reagent HLi, indicating that the cold HLi molecules are efficiently depleted in the reactive encounter with H at relatively low temperatures. The results obtained from the JS approximation are found to agree well qualitatively with the CS results.
借助含时波包方法并使用邓恩等人[《化学物理快报》336, 1 (2001)]的从头算势能面,计算了标题体系的通道特定和初始态选择反应截面以及温度依赖速率常数。在耦合态(CS)近似下明确计算了总角动量J = 74以内的所有分波贡献。还采用标准以及均匀J位移(JS)近似进行了配套计算。反应截面的整体变化与无势垒反应的行为很好地对应。在低和中等碰撞能量下,产生HLi + H产物的氢交换通道比产生Li + H₂产物的HLi消耗通道更受青睐。在低能量下,HLi消耗通道的截面结果中观察到尖锐的共振特征。与单个反应概率曲线中观察到的情况相比,反应截面中的共振特征在各种分波贡献下相互抵消。除了反应开始附近,试剂HLi的振动和转动激发通常不会显著影响任何一个通道的反应性。计算到4000 K的热速率常数显示出近似阿仑尼乌斯型行为。速率常数随试剂HLi的振动激发而降低,表明冷的HLi分子在相对低温下与H的反应碰撞中有效地被消耗。发现从JS近似得到的结果在定性上与CS结果吻合得很好。