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Uncertainty quantification for quantum chemical models of complex reaction networks

机译:复杂反应网络的量子化学模型的不确定度量化

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For the quantitative understanding of complex chemical reaction mechanisms, it is, in general, necessary to accurately determine the corresponding free energy surface and to solve the resulting continuous-time reaction rate equations for a continuous state space. For a general (complex) reaction network, it is computationally hard to fulfill these two requirements. However, it is possible to approximately address these challenges in a physically consistent way. On the one hand, it may be sufficient to consider approximate free energies if a reliable uncertainty measure can be provided. On the other hand, a highly resolved time evolution may not be necessary to still determine quantitative fluxes in a reaction network if one is interested in specific time scales. In this paper, we present discrete-time kinetic simulations in discrete state space taking free energy uncertainties into account. The method builds upon thermochemical data obtained from electronic structure calculations in a condensed-phase model. Our kinetic approach supports the analysis of general reaction networks spanning multiple time scales, which is here demonstrated for the example of the formose reaction. An important application of our approach is the detection of regions in a reaction network which require further investigation, given the uncertainties introduced by both approximate electronic structure methods and kinetic models. Such cases can then be studied in greater detail with more sophisticated first-principles calculations and kinetic simulations.
机译:为了定量了解复杂的化学反应机理,通常需要准确确定相应的自由能表面,并求解连续状态空间的连续时间反应速率方程。对于一般的(复杂的)反应网络,很难满足这两个要求。但是,可以以物理上一致的方式大致解决这些挑战。一方面,如果可以提供可靠的不确定性度量,则考虑近似自由能可能就足够了。另一方面,如果人们对特定的时间尺度感兴趣的话,可能仍不需要高度解析的时间演化来仍然确定反应网络中的定量通量。在本文中,我们提出了在离散状态空间中考虑自由能不确定性的离散时间动力学模拟。该方法基于在冷凝相模型中从电子结构计算获得的热化学数据。我们的动力学方法支持跨多个时间尺度的一般反应网络的分析,此处以甲糖反应为例进行了演示。考虑到近似电子结构方法和动力学模型都带来的不确定性,我们方法的重要应用是检测反应网络中需要进一步研究的区域。然后可以使用更复杂的第一性原理计算和动力学模拟来更详细地研究此类情况。

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