Population Dynamics of a Photon-Only Molecular Motor Shows That Mode Synchronization and Transient Binding Determine the Rotary Quantum Efficiency.

Blanco-Gonzalez A, Kaliakin D, Filatov Gulak M, Paolino M, Leonard J, Olivucci M

Open source

DOI
10.1021/acs.jctc.5c00639
Published
2025 Aug 12
Container
Journal of chemical theory and computation
Publisher
Not recorded
Open access
unknown

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BibTeX

@article{allodium:10.1021/acs.jctc.5c00639,
  title = {Population Dynamics of a Photon-Only Molecular Motor Shows That Mode Synchronization and Transient Binding Determine the Rotary Quantum Efficiency.},
  author = {Blanco-Gonzalez A and Kaliakin D and Filatov Gulak M and Paolino M and Leonard J and Olivucci M},
  year = {2025},
  journal = {Journal of chemical theory and computation},
  doi = {10.1021/acs.jctc.5c00639},
  url = {https://doi.org/10.1021/acs.jctc.5c00639}
}

RIS

TY  - JOUR
TI  - Population Dynamics of a Photon-Only Molecular Motor Shows That Mode Synchronization and Transient Binding Determine the Rotary Quantum Efficiency.
AU  - Blanco-Gonzalez A
AU  - Kaliakin D
AU  - Filatov Gulak M
AU  - Paolino M
AU  - Leonard J
AU  - Olivucci M
PY  - 2025
JO  - Journal of chemical theory and computation
DO  - 10.1021/acs.jctc.5c00639
UR  - https://doi.org/10.1021/acs.jctc.5c00639
ER  - 

APA

A, B., D, K., M, F. G., M, P., J, L., & M, O. (2025). Population Dynamics of a Photon-Only Molecular Motor Shows That Mode Synchronization and Transient Binding Determine the Rotary Quantum Efficiency.. Journal of chemical theory and computation. https://doi.org/10.1021/acs.jctc.5c00639

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