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THEORETICAL RESEARCH ON THE MULTI-CHANNEL REACTION MECHANISM AND KINETICS OF HNCS WITH OH-

机译:含OH-的HNCs多通道反应机理和动力学的理论研究

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We presented a theoretical study on the detailed reaction mechanism and kinetics of the HNCS molecule with the OH-. The barrierless minimum energy path and the most favorable entrance channel have been determined by study the thermodynamic and kinetic characters of the channel with low energy barrier. The B3LYP/6-311++G** method was employed for all the geometrical optimizations and a multi-level extrapolation method based on the G3 energies was employed for further energy refinements. In addition, the analysis of the combining interaction between hydroxide ion and HNCS was performed by natural bond orbitals (NBO) analysis. The calculation results indicated that the reaction of OH- with HNCS had four channels, and the channel of H-atom in HNCS direct extraction to OH- (OH-+HNCS→IM1→TS3→IM4→P2(SCN- +H2O)) in singlet state was the main channel with the low potential energy and high equilibrium constant and reaction rate constant. SCN- and H2O were main products.
机译:我们提出了有关HNCS分子与OH-的详细反应机理和动力学的理论研究。通过研究低能垒通道的热力学和动力学特性,确定了无障碍最小能量路径和最有利的进入通道。 B3LYP / 6-311 ++ G **方法用于所有几何优化,并且基于G3能量的多级外推方法用于进一步的能量精炼。另外,通过自然键轨道(NBO)分析进行氢氧根离子与HNCS之间的结合相互作用的分析。计算结果表明OH-与HNCS的反应有四个通道,HNCS中的H原子通道直接萃取成OH-(OH- + HNCS→IM1→TS3→IM4→P2(SCN- + H2O))单线态是低势能,高平衡常数和反应速率常数的主要通道。 SCN-和H2O是主要产品。

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