Laboratoire de Spectroscopie Atomique Moléculaire et Applications, Département de Physique, Faculté des Sciences de Tunis, Campus Universitaire Farhat Hached, 2092 Tunis ElManar, Tunisia.
Phys Chem Chem Phys. 2019 Sep 18;21(36):20137-20143. doi: 10.1039/c9cp04214h.
Alkali aluminum hydroxide, AlOH, has associated features with the chemistry of aluminum-bearing species and generally with metal hydroxide molecules in the interstellar clouds where it has been observed. The aim of this work is to obtain accurate rotational rate coefficients of AlOH colliding with the most abundant molecular species in the interstellar medium (ISM), H2, in its lowest rotational state p-H2(J = 0) for the kinetic temperature range 5-80 K. A full and accurate 4D-PES was generated using explicitly correlated coupled cluster with single, double and perturbative triple excitation CCSD(T)-F12a augmented by the aVTZ basis set. Both the close coupling CC and coupled states CS techniques were used to generate rotational cross-sections for AlOH-p-H2 including 13 rotational states (J1 = 0,…,12) for the AlOH molecule and the J2 = 0 state for the H2 molecule for energy thresholds up to E = 500 cm-1. Propensity rules that favor odd ΔJ1 transitions are found all over the temperature range. Further, a comparison of the present AlOH-p-H2(J = 0) rate coefficients with scaled AlOH-He rates was made, revealing mainly good agreement with some discrepancies appearing for large ΔJ1. The use of the present rates is viewed to be a good tool to estimate the aluminum hydroxide abundance.
碱式氢氧化铝,AlOH,具有与含铝物质化学性质相关的特征,通常与星际云中的金属氢氧化物分子相关,因为它在星际云中被观测到。这项工作的目的是获得与星际介质(ISM)中最丰富的分子物种 H2 碰撞的 AlOH 的精确转动速率系数,在动力学温度范围为 5-80 K 时,AlOH 处于最低转动状态 p-H2(J = 0)。使用明确相关的耦合簇方法,结合单、双和微扰三重激发 CCSD(T)-F12a,加上 aVTZ 基组,生成了一个完整且准确的 4D-PES。CC 和 CS 技术都用于生成 AlOH-p-H2 的转动截面,包括 AlOH 分子的 13 个转动态(J1 = 0,…,12)和 H2 分子的 J2 = 0 态,能量阈值高达 E = 500 cm-1。在整个温度范围内,都发现了有利于奇数 ΔJ1 跃迁的倾向规则。此外,还将当前的 AlOH-p-H2(J = 0)速率系数与缩放后的 AlOH-He 速率进行了比较,结果主要显示出很好的一致性,只有在较大的 ΔJ1 时才会出现一些差异。使用当前的速率被认为是估计氢氧化铝丰度的一个很好的工具。