Surface Chemistry and Catalysis Peer reviewed

Surface Phonon-MediatedMolecular Diffusion via Vibration–PhononCoupling at the Single-Molecule Level

Minhui Lee, Algan Tian Mahatma, Fajar Prihatno, Emiko Kazuma and 6 more

Journal of the American Chemical Society | Aug 6, 2026

Abstract

Abstract

Abstract Understanding the underlying mechanisms that induce molecular motion on solid surfaces is essential for elucidating elementary surface processes such as molecular diffusion and reactions. To date, several excitation pathways using electrons, heat, and light have been shown to induce the vibrational excitation of molecular adsorbates on surfaces. However, the contribution of substrate phonons to the behaviors of adsorbates has been underexplored despite its ubiquitous importance in various chemical processes. Here, we present evidence that surface phonons can actively induce molecular diffusion, as revealed by investigating the diffusion mechanism of CO on an ultrathin MgO film epitaxially grown on Ag(100). Using action spectroscopy with a scanning tunneling microscope and density functional theory calculations, we reveal a novel diffusion pathway mediated by surface phonons, along with the conventional vibrational excitation of the CO stretching mode. This newly observed diffusion pathway is identified as the Fuchs-Kliewer phonon mode of MgO, coupled with the CO-substrate stretching motion. These findings provide direct mechanistic insight into surface phonon-mediated molecular motion at the single-molecule level, offering a well-defined framework for understanding the vibration–phonon coupling in surface molecular dynamics.

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Authors

Researchers on this paper

Minhui Lee

first | Bunkyo University | ORCID 0000-0001-7217-5334

Algan Tian Mahatma

middle | University of Ulsan

Fajar Prihatno

middle | University of Ulsan

Emiko Kazuma

middle | Bunkyo University | ORCID 0000-0003-0834-9832

Gaku Mizusawa

middle | Interface (United States)

Howon Kim

middle | Institute for Basic Science | ORCID 0000-0002-3024-129X

Michael Trenary

middle | University of Illinois Chicago | ORCID 0000-0003-1419-9252

Jaehoon Jung

middle | University of Ulsan | ORCID 0000-0001-6550-139X

Hyung‐Joon Shin

middle | Ulsan National Institute of Science and Technology | ORCID 0000-0002-6750-118X

Yousoo Kim

last | Bunkyo University | ORCID 0000-0001-7730-0704

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Citation

BibTeX

@article{Lee2026Surface,
  title = {Surface Phonon-MediatedMolecular Diffusion via Vibration–PhononCoupling at the Single-Molecule Level},
  author = {Minhui Lee and Algan Tian Mahatma and Fajar Prihatno and Emiko Kazuma and Gaku Mizusawa and Howon Kim and Michael Trenary and Jaehoon Jung and Hyung‐Joon Shin and Yousoo Kim},
  journal = {Journal of the American Chemical Society},
  year = {2026},
  doi = {10.1021/jacs.6c03768},
  url = {https://doi.org/10.1021/jacs.6c03768}
}

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