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Performance of ACE-Reaction on 26 Organic Reactions for Fully Automated Reaction Network Construction and Microkinetic Analysis

机译:ACE反应对26例有机反应的性能,用于全自动反应网络施工和微因分析

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Accurate analysis of complex chemical reaction networks is necessary for reliable prediction of reaction mechanism. Though quantum chemical methods provide a desirable accuracy, large computational costs are unavoidable as considering numerous reaction pathways on the networks. We proposed a graph-theoretic approach combined with chemical heuristics (named ACE-Reaction) in previous work [Chem. Sci. 2018, 9, 825], which automatically and rapidly finds out the most essential part of reaction networks just from reactants and products, and here we extended it by incorporating a stochastic approach for microkinetic modeling. To show its performance and broad applicability, we applied it to 26 organic reactions, which include 16 common functional groups. As a result, we could demonstrate that ACE-Reaction successfully found the accepted mechanism of all reactions, most within a few hours on a single workstation, and additional microkinetic modeling automatically discovered new competitive paths as well as a major path.
机译:对复杂化学反应网络的准确分析是可靠预测反应机制的必要条件。尽管量子化学方法提供了理想的精度,但大量的计算成本是不可避免的,因为考虑到网络上的许多反应途径。我们提出了一种图形 - 理论方法,与先前的工作中的化学启发式(名为ACE-反应)联合[化学。 SCI。 2018,9,825],它自动迅速地从反应物和产品中发现了反应网络中最重要的部分,在这里,我们通过掺入随机造型的随机方法来扩展。为了表明其性能和广泛的适用性,我们将其施加到26个有机反应中,包括16个常用官能团。结果,我们可以证明ACE-反应成功地发现了所有反应的接受机制,大部分时间内在单个工作站的几个小时内,额外的微因素建模自动发现了新的竞争路径以及主要路径。

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