The non-adiabatic nanoreactor: towards the automated discovery of photochemistry.
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ABSTRACT: The ab initio nanoreactor has previously been introduced to automate reaction discovery for ground state chemistry. In this work, we present the nonadiabatic nanoreactor, an analogous framework for excited state reaction discovery. We automate the study of nonadiabatic decay mechanisms of molecules by probing the intersection seam between adiabatic electronic states with hyper-real metadynamics, sampling the branching plane for relevant conical intersections, and performing seam-constrained path searches. We illustrate the effectiveness of the nonadiabatic nanoreactor by applying it to benzene, a molecule with rich photochemistry and a wide array of photochemical products. Our study confirms the existence of several types of S0/S1 and S1/S2
SUBMITTER: Pieri E
PROVIDER: S-EPMC8171323 | biostudies-literature | 2021 Apr
REPOSITORIES: biostudies-literature
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