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首页> 外文期刊>The Journal of Chemical Physics >Energy and temperature dependent dissociation of the Na+(benzene)(1,2) clusters: Importance of anharmonicity
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Energy and temperature dependent dissociation of the Na+(benzene)(1,2) clusters: Importance of anharmonicity

机译:Na +(苯)(1,2)团簇的能量和温度依赖性解离:非谐性的重要性

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Chemical dynamics simulations were performed to study the unimolecular dissociation of randomly excited Na+(Bz) and Na+(Bz)(2) clusters; Bz = benzene. The simulations were performed at constant energy, and temperatures in the range of 1200-2200 K relevant to combustion, using an analytic potential energy surface (PES) derived in part from MP2/6-311+G* calculations. The clusters decompose with exponential probabilities, consistent with RRKM unimolecular rate theory. Analyses show that intramolecular vibrational energy redistribution is sufficiently rapid within the clusters that their unimolecular dynamics is intrinsically RRKM. Arrhenius parameters, determined from the simulations of the clusters, are unusual in that E-a is similar to 10 kcal/mol lower the Na+(Bz) -> Na+ + Bz dissociation energy and the A-factor is approximately two orders-of-magnitude too small. Analyses indicate that temperature dependent anharmonicity is important for the Na+(Bz) cluster's unimolecular rate constants k(T). This is consistent with the temperature dependent anharmonicity found for the Na+(Bz) cluster from a Monte Carlo calculation based on the analytic PES used for the simulations. Apparently temperature dependent anharmonicity is quite important for unimolecular dissociation of the Na+(Bz) 1,2 clusters. (C) 2015 AIP Publishing LLC.
机译:进行化学动力学模拟,以研究随机激发的Na +(Bz)和Na +(Bz)(2)团簇的单分子解离; Bz =苯。使用部分从MP2 / 6-311 + G *计算得出的解析势能面(PES),在恒定能量和与燃烧相关的1200-2200 K范围内的温度下进行了模拟。这些簇以指数概率分解,这与RRKM单分子速率理论一致。分析表明,分子内振动能的重新分布在簇中足够快,以至于它们的非分子动力学本质上就是RRKM。由团簇的模拟确定的Arrhenius参数是不寻常的,因为Ea类似于Na +(Bz)-> Na + + Bz解离能低10 kcal / mol,并且A因子也大约是两个数量级。小。分析表明,温度依赖性非谐性对于Na +(Bz)团簇的单分子速率常数k(T)很重要。这与基于模拟所用的分析PES的蒙特卡罗计算得出的Na +(Bz)团簇的温度依赖性非调和一致。显然,温度依赖性非谐性对于Na +(Bz)1,2团簇的单分子解离非常重要。 (C)2015 AIP Publishing LLC。

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