Unsleber Jan P, Grimmel Stephanie A, Reiher Markus
Laboratorium für Physikalische Chemie, ETH Zürich, Vladimir-Prelog-Weg 2, 8093 Zürich, Switzerland.
J Chem Theory Comput. 2022 Sep 13;18(9):5393-5409. doi: 10.1021/acs.jctc.2c00193. Epub 2022 Aug 4.
Fueled by advances in hardware and algorithm design, large-scale automated explorations of chemical reaction space have become possible. Here, we present our approach to an open-source, extensible framework for explorations of chemical reaction mechanisms based on the first-principles of quantum mechanics. It is intended to facilitate reaction network explorations for diverse chemical problems with a wide range of goals such as mechanism elucidation, reaction path optimization, retrosynthetic path validation, reagent design, and microkinetic modeling. The stringent first-principles basis of all algorithms in our framework is key for the general applicability that avoids any restrictions to specific chemical systems. Such an agile framework requires multiple specialized software components of which we present three modules in this work. The key module, Chemoton, drives the exploration of reaction networks. For the exploration itself, we introduce two new algorithms for elementary-step searches that are based on Newton trajectories. The performance of these algorithms is assessed for a variety of reactions characterized by a broad chemical diversity in terms of bonding patterns and chemical elements. Chemoton successfully recovers the vast majority of these. We provide the resulting data, including large numbers of reactions that were not included in our reference set, to be used as a starting point for further explorations and for future reference.
在硬件和算法设计进步的推动下,对化学反应空间进行大规模自动化探索已成为可能。在此,我们展示了一种基于量子力学第一原理的用于探索化学反应机理的开源、可扩展框架的方法。它旨在促进针对各种具有广泛目标(如机理阐明、反应路径优化、逆合成路径验证、试剂设计和微观动力学建模)的化学问题的反应网络探索。我们框架中所有算法严格的第一原理基础是其具有普遍适用性的关键,避免了对特定化学系统的任何限制。这样一个灵活的框架需要多个专门的软件组件,我们在这项工作中展示了其中三个模块。关键模块Chemoton驱动反应网络的探索。对于探索本身,我们引入了两种基于牛顿轨迹的用于基本步骤搜索的新算法。针对各种在键合模式和化学元素方面具有广泛化学多样性的反应,评估了这些算法的性能。Chemoton成功恢复了其中绝大多数反应。我们提供所得数据,包括大量未包含在我们参考集中的反应,作为进一步探索的起点和未来参考。