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Theoretical study on dynamics of the gas phase reactions of CF3CF2CH2OCHF2 with OH radicals

机译:CF3CF2CH2OCHF2与OH自由基气相反应动力学的理论研究

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A theoretical study on the mechanism and dynamics properties of the gas-phase reaction of CF3CF2CH2OCHF2 + OH is performed by using BMK method with the 6-311+G(d,p) basis set. The energy is further refined by the BMC-CCSD theory on the basis of the optimized structures. There are two kinds of H-abstraction channels and two displacement channels. The reactivity of displacement and H-abstraction reaction is compared from both the thermodynamic and kinetic viewpoints. The contributions from displacement channels are negligible. For both H-abstraction channels, the H-abstraction from -CH2- site is more favorable than that from -CHF2 site. The rate constants of title reaction are firstly determined by theoretical method in a wide temperature range.
机译:采用6-311 + G(d,p)基组的BMK方法对CF3CF2CH2OCHF2 + OH的气相反应机理和动力学性质进行了理论研究。在优化结构的基础上,通过BMC-CCSD理论进一步完善了能量。有两种H吸收通道和两个位移通道。从热力学和动力学的观点比较了置换反应和H-抽象反应的反应性。流离失所渠道的贡献微不足道。对于两个H吸收通道,从-CH2-位置进行的H-提取比从-CHF2位置进行的H-提取更为有利。首先通过理论方法在较宽的温度范围内确定标题反应的速率常数。

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