首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Predicted Reaction Rates of H_xN_yO_z Intermediates in the Oxidation of Hydroxylamine by Aqueous Nitric Acid
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Predicted Reaction Rates of H_xN_yO_z Intermediates in the Oxidation of Hydroxylamine by Aqueous Nitric Acid

机译:硝酸水溶液氧化羟胺中H_xN_yO_z中间体的预测反应速率

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This work reports computed rate coefficients of 90 reactions important in the autocatalytic oxidation of hydroxylamine in aqueous nitric acid. Rate coefficients were calculated using four approaches: Smoluchowski (Stokes—Einstein) diffusion, a solution-phase incarnation of transition state theory based on quantum chemistry calculations, simple Marcus theory for electron-transfer reactions, and a variational TST approach for dissociative isomerization reactions that occur in the solvent cage. Available experimental data were used to test the accuracy of the computations. There were significant discrepancies between the computed and experimental values for some key parameters, indicating a need for improvements in computational methodology. Nonetheless, the 90-reaction mechanism showed the ability to reproduce many of the trends seen in experimental studies of this very complicated kinetic system. This work highlights reactions that may govern the system evolution and branching behavior critical to the stability of the system. We hope that this analysis will guide experimental investigations to reduce the uncertainties in the critical rate coefficients and thermochemistry, allowing an unambiguous determination of the dominant reaction pathways in the system. Advances in efficient and accurate solvation models that effectively separate entropic and enthalpic contributions will most directly benefit solution-phase modeling efforts. Methods for more accurately estimating activity coefficients, including at infinite dilution in multicomponent mixtures, are needed for modeling high ionic strength aqueous systems. A detailed derivation of the solution-phase equilibrium and transition state theory rate expressions in solution is included in the Supporting Information.
机译:这项工作报告了在硝酸水溶液中羟胺的自催化氧化过程中重要的90个反应的速率系数。使用四种方法计算速率系数:Smoluchowski(Stokes-Einstein)扩散,基于量子化学计算的过渡态理论的溶液相化身,用于电子转移反应的简单Marcus理论以及用于解离异构化反应的变分TST方法,发生在溶剂笼中。可用的实验数据用于测试计算的准确性。对于某些关键参数,计算值与实验值之间存在显着差异,表明需要改进计算方法。尽管如此,90反应机理显示出能够重现在这个非常复杂的动力学系统的实验研究中看到的许多趋势的能力。这项工作强调了可能控制系统演化和对系统稳定性至关重要的分支行为的反应。我们希望这种分析将指导实验研究,以减少临界速率系数和热化学的不确定性,从而能够明确确定系统中的主要反应途径。有效分离熵和焓贡献的有效且精确的溶剂化模型的进步将最直接地受益于解决方案阶段建模工作。需要用于更准确地估计活度系数的方法,包括在多组分混合物中无限稀释时,才能对高离子强度的水性体系进行建模。支持信息中包括对溶液相平衡和过渡态理论速率表达式的详细推导。

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