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基于取向敏感成对势的液态N₂O₄⇌2NO₂分子动力学模拟。III. 反应动力学

Molecular dynamics simulation of liquid N2O4<-->2NO2 by orientation-sensitive pairwise potential. III. Reaction dynamics.

作者信息

Katō Toshiko

机构信息

Seibo Jogakuin Jr. College, Fukakusa, Fushimi-ku, Kyoto, 612-0878, Japan.

出版信息

J Chem Phys. 2004 Jan 8;120(2):829-38. doi: 10.1063/1.1630291.

Abstract

The dissociation and association dynamics of N2O4 [see text] 2NO2 in liquid state are studied by classical molecular dynamics simulations of reactive liquid NO2. An OSPP+LJ potential between NO2 molecules, which is a sum of an orientation-sensitive pairwise potential (OSPP) between N-N atoms proposed in Paper I [J. Chem. Phys. 115, 10852 (2001)] and Lennard-Jones potentials between N-O and O-O atoms, has been used in the simulation. The reaction dynamics is studied as a function of well depth De and anisotropy factors of the OSPP potential: Atheta (0< or =Atheta< or =1) for the rocking angle and Atau (0< or =Atau< or =0.5) for the torsional angle of relative NO2-NO2 orientation. The lifetime tauD of initially prepared NO2 dimers is found to increase as De increases, Atheta increases, and Atau decreases. Dissociation and association dynamics are studied in detail around the extreme limit of pure NO2-dimer liquid: De=0.12 x 10(-18) J, Atheta=0.5, and Atau=0.1, which has been found to reproduce both the observed liquid phase equilibrium properties and Raman band shapes of the dissociation mode very well. The dissociation dynamics from microscopic reaction trajectories is compared with the potential of the mean force (PMF) as a function of the N-N distance R. The PMF of reactive liquid NO2 shows a transition state barrier at R=2.3-2.5 A, and NO2-trimer structure is found to be formed at the barrier. Two types of dissociation of the NO2 dimer-the dissociation by collisional activation of the reactive mode to cross the dissociation limit and the NO2-mediated dissociation via bond transfer-are studied. The latter needs less free energy and is found to be much more probable. The dissociation trajectories and PMF in reactive liquid NO2 are compared with those of a reactive NO2 pair in inert solvent N2O4.

摘要

通过对反应性液态二氧化氮进行经典分子动力学模拟,研究了液态中N₂O₄[见正文]⇌2NO₂的解离和缔合动力学。模拟中使用了NO₂分子间的一种OSPP + LJ势,它是第一篇论文[《化学物理杂志》115, 10852 (2001)]中提出的N - N原子间取向敏感对势(OSPP)与N - O和O - O原子间Lennard - Jones势的总和。研究了反应动力学作为OSPP势阱深De和各向异性因子的函数:相对NO₂ - NO₂取向的摇摆角的Aθ(0≤Aθ≤1)和扭转角的Aτ(0≤Aτ≤0.5)。发现初始制备的NO₂二聚体的寿命τD随着De增加、Aθ增加和Aτ减小而增加。在纯NO₂ - 二聚体液体的极限情况(De = 0.12×10⁻¹⁸ J,Aθ = 0.5,Aτ = 0.1)附近详细研究了解离和缔合动力学,已发现这种情况能很好地重现观察到的液相平衡性质和解离模式的拉曼带形状。将微观反应轨迹的解离动力学与作为N - N距离R的函数的平均力势(PMF)进行了比较。反应性液态二氧化氮的PMF在R = 2.3 - 2.5 Å处显示出一个过渡态势垒,并且发现NO₂ - 三聚体结构在势垒处形成。研究了NO₂二聚体的两种解离类型——通过反应模式的碰撞激活越过解离极限的解离以及通过键转移的NO₂介导的解离。后者需要的自由能更少,并且发现其可能性要大得多。将反应性液态二氧化氮中的解离轨迹和PMF与惰性溶剂N₂O₄中反应性NO₂对的轨迹和PMF进行了比较。

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