北陸先端科学技術大学院大学 [JAIST] - 研究者総覧
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山本 裕子 (ヤマモト ユウコ) 准教授
マテリアルサイエンス系、物質化学領域

30件中1-20件目

  • 1. Active Tuning of Strong Coupling States between Dye Excitons and Localized Surface Plasmons via Electrochemical Potential Control,Yuko S. Yamamoto,ACS Photonics,5,3,788-796,2018年1月
  • 2. Why and how do the shapes of surface-enhanced Raman scattering spectra change? Recent progress from mechanistic studies,Yuko S. Yamamoto, Tamitake Itoh,JOURNAL OF RAMAN SPECTROSCOPY2016年1月,47,78-88,2016/01
  • 3. Single-Molecule Surface-Enhanced Raman Scatteting Spectrum of Non-Resonant Aromatic Amine Showing Raman Forbidden Bands,Yuko Yamamoto, Yuya Kayano, Yukihiro Ozaki, Zhenglomg Zhang, Tomomi Kozu, Tamitake Itoh, and Shunsuke Nakanishi,arXiv,1610.0827
  • 4. Different behaviour of molecules in dark SERS state on colloidal Ag nanoparticles estimated by truncated power law analysis of blinking SERS,Yasutaka Kitahama, Daichi Araki, Yuko S Yamamoto, Tamitake Itoh, Yukihiro Ozaki,PHYSICAL CHEMISTRY CHEMICAL PHYSICS,17,21204-21210,2015/08
  • 5. プラズモン増強分光法の新展開-強い電磁増強場で見えてきたフェルミ黄金律の破綻,山本裕子、伊藤民武、尾崎幸洋,月刊「化学」,70,68-69,2015/03
  • 6. Recent progress and frontiers in the electromagnetic mechanism of surface-enhanced Raman scattering,Yuko S. Yamamoto, Yukihiro Ozaki, Tamitake Itoh,Journal of Photochemistry and Photobiology C Photochemistry Reviews,21,81-104,2014/12
  • 7. A simple method for evaluation of optical scattering effect on the Raman signal of a sample beneath an Intralipid layer,Yuko S. Yamamoto, Tamitake Itoh, Hidetoshi Sato and Yukihiro Ozaki,VIBRATIONAL SPECTROSCOPY,74,132-136,2014/09
  • 8. Single-molecular surface-enhanced resonance Raman scattering as a quantitative probe of local electromagnetic field: The case of strong coupling between plasmonic and excitonic resonance,Tamitake Itoh, Yuko S. Yamamoto, Hiroharu Tamaru, Vasudevanpillai Biju, Shin-ichi Wakida, Yukihiro Ozaki,PHYSICAL REVIEW B,89,195436,2014/05
  • 9. Fundamental studies on enhancement and blinking mechanism of surface-enhanced Raman scattering (SERS) and basic applications of SERS biological sensing,Yuko S Yamamoto, Mitsuru Ishikawa, Yukihiro Ozaki, Tamitake Itoh,FRONTIERS OF PHYSICS,9,31-46,2014/02
  • 10. Direct Conversion of Silver Complexes to Nanoscale Hexagonal Columns on Copper Alloy for Plasmonic Applications,Yuko S. Yamamoto*, Katsuyuki Hasegawa*, Yuuki Hasegawa*, Naoshi Takahashi, Yasutaka Kitahama, Satoshi Fukuoka, Norio Murase, Yoshinobu Baba, Yukihiro Ozaki, Tamitake Itoh(C.A.),PHYSICAL CHEMISTRY CHEMICAL PHYSICS,15,14611-14615,2013/07
  • 11. Excitation laser energy dependence of surface-enhanced fluorescence showing plasmon-induced ultrafast electronic dynamics in dye molecules,Tamitake Itoh, Yuko S. Yamamoto, Hiroharu Tamaru, Vasudevanpillai Biju, Norio Murase, Yukihiro Ozaki,PHYSICAL REVIEW B,87,23540,2013/06
  • 12. Plasmonic staining of DNA molecules with photo-induced Ag nanoparticles monitored using dark-field microscopy,Yuko S. Yamamoto, Ken Hirano, Tomomi Ishido, Takao Yasui, Norio Murase, Yoshinobu Baba, Tamitake Itoh(C.A.),PHYSICAL CHEMISTRY CHEMICAL PHYSICS,15,10316-10320,2013/05
  • 13. Plasmonic Imaging of Brownian Motion of Single DNA Molecules Spontaneously Binding to Ag Nanoparticles,Ken Hirano, Tomomi Ishido*, Yuko S. Yamamoto*, Norio Murase, Masatoshi Ichikawa, Kenichi Yoshikawa, Yoshinobu Baba, Tamitake Itoh,NANO LETTERS,13,1877-1882,2013/04
  • 14. Plasma Resonance Localized on Metal Nanoparticle Surface (Surface Plasmon Resonance) and its Application for Biosensing,Yuko S. Yamamoto and Tamitake Itoh,,Proceedings of 30th Symposium on Plasma Processing,SPP-30,49-50,2013
  • 15. Noninvasive Subsurface Analysis Using Multiple Miniaturized Raman Probes, Part I: Basic Study of Thin-Layered Transparent Models of Biomedical Tissues,Yuko S. Yamamoto, Hideyuki Shinzawa, Yuji Matsuura, Yukihiro Ozaki, and Hidetoshi Sato,APPLIED SPECTROSCOPY,65,844-848,2011/08
  • 16. Raman study of brain functions in live mice and rats: A pilot study,Hidetoshi Sato, Yuko S. Yamamoto, Atsushi Maruyama, Takashi Katagiri, Yuji Matsuura, and Yukihiro Ozaki,VIBRATIONAL SPECTROSCOPY,50,125-130,2011/08
  • 17. ラマン分光分析によるバイオプシー技術の展望,佐藤英俊,小杉浩司,Retno Hariyani,山本裕子,Bibin. B. Andriana,日本レーザー医学会誌,31,420-427,2011/04
  • 18. ラマン分光法を用いた生体分析技術-光バイオプシー技術の展望,大嶋佑介、山本裕子、鈴木利明、佐藤英俊,ぶんせき,5,229-236,2010/05
  • 19. High axial resolution Raman probe made of single hollow optical fiber,High axial resolution Raman probe made of single hollow optical fiber,APPLIED SPECTROSCOPY,63,103-107,2009/01
  • 20. Subsurface Sensing of Biomedical Tissues Using a Miniaturized Raman Probe: Study of Thin-layered Model Samples,Yuko S. Yamamoto, Yusuke Oshima, Hideyuki Shinzawa, Takashi Katagiri, Yuji Matsuura, Yukihiro Ozaki, Hidetoshi Sato,ANALYTICA CHIMICA ACTA,619,8-13,2008/06

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