Chemoton 2.0: Autonomous Exploration of Chemical Reaction Networks
Jan P. Unsleber, Stephanie A. Grimmel, and Markus Reiher

TL;DR
Chemoton 2.0 is an open-source framework enabling automated, first-principles exploration of chemical reaction networks, facilitating diverse chemical research tasks with new algorithms for reaction path searches.
Contribution
It introduces Chemoton 2.0, a flexible, first-principles-based software framework with novel Newton trajectory algorithms for reaction network exploration.
Findings
Successfully explores diverse chemical reactions
Reproduces and extends known reaction data
Provides a versatile tool for reaction mechanism studies
Abstract
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…
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