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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >An Ab Initio Molecular Dynamics Study of the Hydrolysis Reaction of Sulfur Trioxide Catalyzed by a Formic Acid or Water Molecule
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An Ab Initio Molecular Dynamics Study of the Hydrolysis Reaction of Sulfur Trioxide Catalyzed by a Formic Acid or Water Molecule

机译:甲酸或水分子催化二氧化二氧化硫水解反应的AB初始分子动力学研究

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摘要

Ab initio molecular dynamics (AIMD) calculations have been performed to investigate the role of dynamical and steric effects in formic acid (FA) or H2O-catalyzed gas phase hydrolysis of SO3 to form sulfuric acid. This was done by colliding FA or H2O with the SO3-H2O complex and the water dimer with the SO3 molecule and analyzing the outcomes of 230 AIMD trajectories. Our calculations show that, within simulation times used, sulfuric acid is formed in 5% of FA collisions but is not produced when H2O collides with the SO3-H2O complex or when the water dimer collides with the SO3 molecule. We also find that FA collisions have about 2 times higher probability to form the prereactive complex than H2O collisions. Moreover, our simulations show that the SO3-H2O-FA prereactive complex is more stable in time than the SO3-H2O-H2O prereactive complex. These findings indicate that the FA-catalyzed mechanism is favored over the H2O one when looking from the steric and dynamic effect point of view. Additionally, AIMD simulations starting from the optimized structure of the SO3-H2O-FA prereactive complex have been computed to qualitatively estimate the rate of the sulfuric acid formation. Collisional energy has been observed to promote sulfuric acid formation more effectively than thermal excitation.
机译:从头计算分子动力学(AIMD)的计算已经进行研究的在甲酸(FA)或SO 3的H 2 O-催化气相水解动力学和空间效应的作用,以形成硫酸。这是通过碰撞FA或H 2 O与SO 3 - H 2 O络合物,并与SO3分子水二聚体和分析的230条AIMD轨迹的结果完成的。我们的计算表明,内使用仿真次,被形成在FA碰撞的5%硫酸,但不产生H2O时碰撞到SO 3 - H 2 O络合物或当与SO3分子水二聚体碰撞。我们还发现,FA碰撞具有约2倍的概率形成prereactive复杂得多H2O碰撞。此外,我们的模拟表明,SO3-H2O-FA prereactive复杂更稳定的时间比SO3-H2O-H2O prereactive复杂。这些发现表明,从视立体和动态效果点看,当FA-催化机制是有利的在H 2 O之一。此外,AIMD模拟从SO3-H2O-FA的最佳结构开始prereactive复杂定性估计硫酸形成的速率已被计算的。碰撞能量已经观察到比热激发更有效地促进硫酸的形成。

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