Describing proton transfer modes in shared proton systems with constrained nuclear-electronic orbital methods

14 March 2023, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

Abstract Proton transfer is crucial in various chemical and biological processes. Because of significant nuclear quantum effects, the accurate and efficient description of proton transfer remains a great challenge. In this communication, we apply constrained nuclear-electronic orbital density functional theory (CNEO-DFT) and constrained nuclear-electronic orbital molecular dynamics (CNEO-MD) to three prototypical shared proton systems and investigate their proton transfer modes. We find that with a good description of nuclear quantum effects, CNEO-DFT and CNEO-MD can well describe the geometries and vibrational spectra of the shared proton systems. This good performance is in great contrast to DFT and DFT-based ab initio molecular dynamics, which often fail for shared proton systems. As an efficient method based on classical simulations, CNEO-MD is promising for future investigations of large and more complex proton transfer systems.

Supplementary materials

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Title
Supporting Information: Describing proton transfer modes in shared proton systems with constrained nuclear-electronic orbital methods
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Additional information on geometries and normal coordinate analysis.
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