Publications of Akitoshi Shiotari
All genres
Journal Article (9)
2025
Journal Article
Wiedenhaupt, Henrik, Fabian Schulz, Luis Parra Lopez, Adnan Hammud, Youngwook Park, Akitoshi Shiotari, , Martin Wolf and Melanie Müller: Plasmonic Light Emission by Inelastic Charge Transport in Ultrathin Zinc Oxide/Metal Heterostructures.
2024
Journal Article
Cirera, Borja, Shuyi Liu, Youngwook Park, , Martin Wolf, Akitoshi Shiotari and Takashi Kumagai: Single-molecule tip-enhanced Raman spectroscopy of C60 on the Si(111)-(7x7) surface.
Journal Article
Akitoshi Shiotari, , and : , , , Sub-Tip-Radius Near-Field Interactions in Nano-FTIR Vibrational Spectroscopy on Single Proteins.
Journal Article
Park, Youngwook, , Adnan Hammud, , Martin Wolf and Akitoshi Shiotari: Atomic-precision control of plasmon-induced single-molecule switching in a metal-semiconductor nanojunction.
2022
Journal Article
Akitoshi Shiotari, , , , , , , , and : , , On-surface synthesis of hydroxy-functionalized graphene nanoribbons through deprotection of methylenedioxy groups.
2021
Journal Article
Akitoshi Shiotari and : , Mechanically induced single-molecule helicity switching of graphene-nanoribbon-fused helicene on Au(111).
2016
Journal Article
Kumagai, Takashi, Shuyi Liu, Akitoshi Shiotari, Delroy A. Baugh, Shamil K. Shaikhutdinov and Martin Wolf: Local electronic structure, work function, and line defect dynamics of ultrathin epitaxial ZnO layers on a Ag(1 1 1) surface.
2014
Journal Article
Shiotari, Akitoshi, Takashi Kumagai and Martin Wolf: Tip-Enhanced Raman Spectroscopy of Graphene Nanoribbons on Au(111).
Journal Article
Shiotari, Akitoshi, Bo Hong Liu, Simon Jaekel, Leonhard Grill, Shamil K. Shaikhutdinov, Hans-Joachim Freund, Martin Wolf and Takashi Kumagai: Local Characterization of Ultrathin ZnO Layers on Ag(111) by Scanning Tunneling Microscopy and Atomic Force Microscopy.
Talk (9)
2025
Talk
Shiotari, Akitoshi: Visualization of the Inside of Molecules by Scanning Probe Microscopy.
(5th Research Meeting of the Next Generation Nanoprobe Technology Committee, Online Event, Jan 2025).
Talk
Shiotari, Akitoshi: Development of High Spatial Resolution Near-Field Optical Microscopy Based on Low-Temperature STM/AFM.
(Spring Meeting 2025, The Physical Society of Japan, Online Event, Mar 2025).
Talk
Shiotari, Akitoshi: Precise Control of Single-Molecule Photoreactions by Plasmonic Picocavities.
(Seminar, Institute of Physical Chemistry, University of Graz, Graz, Austria, Apr 2025).
2024
Talk
Shiotari, Akitoshi: Atomic-Scale Control of Plasmon-Driven Single-Molecular Switch.
(Pacific Rim Symposium on Surfaces, Coatings and Interfaces, PacSurf 2024, Waikoloa, HI, USA, Dec 2024).
Talk
Shiotari, Akitoshi: Exploring the Adaptability of Tip-Enhanced Raman Spectroscopy.
(ISSP International Workshop, Materials Science of Solids and Surfaces using Radiation Field Controlled in Time/Space Domain, Kashiwa, Japan, Oct 2024).
2023
Talk
Shiotari, Akitoshi: Ultrahigh Resolution Imaging of Ice Surfaces by Noncontact Atomic Force Microscopy.
(Seminar, Department of Surface and Plasma Science, Charles University, Prague, Czech Republic, Mar 2023).
Talk
Shiotari, Akitoshi: Exploring Adaptability of Tip-Enhanced Raman Spectroscopy.
(Joint Workshop Fritz Haber Institute (FHI) & Institute for Molecular Science, Japan (IMS), Emerging Techniques of Nanospectroscopy Based on Scanning Probe Microscopy, Berlin, Germany, Dec 2023).
Talk
Shiotari, Akitoshi: Visualization of the Inside of Molecules by Scanning Probe Microscopy.
(7th Physics and Applied Physics Seminar in Germany for Japanese Researchers, Potsdam, Germany, Feb 2023).
2021
Talk
Shiotari, Akitoshi: Control of Single-Molecule Reactions by High Spatial Resolution AFM.
(1st IMS-FHI Symposium: Emerging Techniques of Scanning Probe Microscopy, Online Event, Jul 2021).
Working Paper (2)
2024
Working Paper
Shiotari, Akitoshi, Shuyi Liu, , , Martin Wolf, and : Picocavity-enhanced Raman spectroscopy of physisorbed H2 and D2 molecules.
Working Paper
Shiotari, Akitoshi, , , , Martin Wolf, and Melanie Müller: Picocavity-enhanced near-field optical microscopy with 1 nm resolution.