OAK

Single-Molecule Investigation of Plasmonic Near-Field Effects on a Dissociation Reaction

Metadata Downloads
Abstract
Plasmonic near-field effects have attracted more attention as a means of enhancing photoexcitation and photoresponses in materials and devices. Although chemical reactions are one of the important applications, a detailed microscopic understanding of the plasmonic near-field effect in chemical reactions is still lacking. In this study, we reveal that the degree of coupling between the plasmonic electric field and the molecular transition dipole moment governs the reactivity at the single-molecule level. This was demonstrated via single-molecule analysis of the reactivity for dimethyl disulfide weakly chemisorbed on Ag(111) by the combination of experiments using a scanning tunneling microscope (STM) and theoretical calculations. Through precise analysis of the dependence of the reactivity on the angle between the molecular axis and the local plasmonic field, the adsorption configuration dependence of dissociation can be explained by the interaction of the molecules with the plasmonic electric field anisotropically distributed at the nanogap in the STM junction. © 2025 American Chemical Society.
Author(s)
Kazuma, EmikoPrihatno, FajarJung, JaehoonTrenary, MichaelKim, Yousoo
Issued Date
2025-02
Type
Article
DOI
10.1021/acs.jpclett.4c03564
URI
https://scholar.gist.ac.kr/handle/local/9043
Publisher
American Chemical Society
Citation
Journal of Physical Chemistry Letters, v.16, no.7, pp.1810 - 1816
ISSN
1948-7185
Appears in Collections:
Department of Chemistry > 1. Journal Articles
공개 및 라이선스
  • 공개 구분공개
파일 목록
  • 관련 파일이 존재하지 않습니다.

Items in Repository are protected by copyright, with all rights reserved, unless otherwise indicated.