Understanding the reaction between muonium atoms and hydrogen molecules: zero point energy, tunnelling, and vibrational adiabaticity

被引:20
作者
Aldegunde, J. [1 ]
Jambrina, P. G. [2 ]
Garcia, E. [3 ]
Herrero, V. J. [4 ]
Saez-Rabanos, V. [5 ]
Aoiz, F. J. [2 ]
机构
[1] Univ Salamanca, Fac Quim, Dept Quim Fis, E-37008 Salamanca, Spain
[2] Univ Complutense Madrid, Fac Quim, Dept Quim Fis, Unidad Asociada CSIC, E-28040 Madrid, Spain
[3] Univ Pais Vasco UPV EHU, Dept Quim Fis, Vitoria 01006, Spain
[4] CSIC, Inst Estruct Mat, E-28006 Madrid, Spain
[5] Univ Politecn Madrid, Dept Quim & Bioquim, ETS Ingenieros Montes, E-28040 Madrid, Spain
关键词
reaction dynamics; reactive scattering; kinetics; isotopic effects; tunnelling; TRANSITION-STATE THEORY; CHEMICAL-REACTION RATES; THERMAL RATE CONSTANTS; CLASSICAL TRAJECTORIES; REACTION PROBABILITIES; COLLINEAR REACTIONS; DIRECT DYNAMICS; CROSS-SECTIONS; GAS-PHASE; QUANTUM;
D O I
10.1080/00268976.2013.815399
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The advent of very precise measurements of rate coefficients in reactions of muonium (Mu), the lightest hydrogen isotope, with H-2 in its ground and first vibrational state and of kinetic isotope effects with respect to heavier isotopes has triggered a renewed interests in the field of muonic chemistry. The aim of the present article is to review the most recent results about the dynamics and mechanism of the reaction Mu+H-2 to shed light on the importance of quantum effects such as tunnelling, the preservation of the zero point energy, and the vibrational adiabaticity. In addition to accurate quantum mechanical (QM) calculations, quasiclassical trajectories (QCT) have been run in order to check the reliability of this method for this isotopic variant. It has been found that the reaction with H-2(v=0) is dominated by the high zero point energy (ZPE) of the products and that tunnelling is largely irrelevant. Accordingly, both QCT calculations that preserve the products' ZPE as well as those based on the Ring Polymer Molecular Dynamics methodology can reproduce the QM rate coefficients. However, when the hydrogen molecule is vibrationally excited, QCT calculations fail completely in the prediction of the huge vibrational enhancement of the reactivity. This failure is attributed to tunnelling, which plays a decisive role breaking the vibrational adiabaticity when v=1. By means of the analysis of the results, it can be concluded that the tunnelling takes place through the (1)=1 collinear barrier. Somehow, the tunnelling that is missing in the Mu+H-2(v=0) reaction is found in Mu+H-2(v=1).
引用
收藏
页码:3169 / 3181
页数:13
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