Ishibashi Ken‐ichi | Tohoku Univ. Sendai Jpn
スポンサーリンク
概要
関連著者
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Ishibashi Ken‐ichi
Tohoku Univ. Sendai Jpn
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Niwano Michio
Tohoku Univ. Sendai Jpn
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Kimura Yasuo
Research Institute Of Electrical Communication Tohoku University
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Ishibashi Kenichi
Research Institute Of Electrical Communication Tohoku University
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Miyamoto Ko-ichiro
Research Institute Of Electrical Communication Tohoku University
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Kimura Yasuo
Research Institute of Electrical Communication (RIEC), Tohoku University
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Niwano Michio
Research Institute of Electrical Communication (RIEC), Tohoku University
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Yamaguchi Ryo‐taro
Research Institute Of Electrical Communication Tohoku University
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Niwano Michio
Research Institute Of Electrical Communication (riec) Tohoku University
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Kimura Yasuo
Research Institute Of Electrical Communication (riec) Tohoku University
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Yamaguchi Ryo-taro
Research Institute Of Electrical Communication Tohoku University
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HIRANO Ayumi
Research Institute of Electrical Communication, Tohoku University
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ISHIBASHI Kenichi
Research Institute of Electrical Communication, Tohoku University
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MIYAMOTO Koichiro
Research Institute of Electrical Communication, Tohoku University
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MIYAMOTO Ko-ichiro
Laboratory for Nanoelectronics and Spintronics, Research Institute of Electrical Communication, Toho
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KIMURA Yasuo
Laboratory for Nanoelectronics and Spintronics, Research Institute of Electrical Communication, Toho
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NIWANO Michio
Laboratory for Nanoelectronics and Spintronics, Research Institute of Electrical Communication, Toho
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Hirano Ayumi
Research Institute Of Electrical Communication Tohoku University
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Kimura Yasuo
Research Institute Of Electrical Communication (riec) Tohoku University:core Research For Evolutiona
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Miyamoto Ko-ichiro
Laboratory For Nanoelectronics And Spintronics Research Institute Of Electrical Communication Tohoku
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Kimura Yasuo
Laboratory for Nanoelectronics and Spinelectronics, Research Institute of Electrical Communication, Tohoku University
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Niwano Michio
Laboratory for Nanoelectronics and Spinelectronics, Research Institute of Electrical Communication, Tohoku University
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Gosalvez Miguel
Nagoya Univ. Nagoya Jpn
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YAMAGUCHI Ryo-taro
Research Institute of Electrical Communication, Tohoku University
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YAMAGUCHI Ryo-traro
Laboratory for Nanoelectronics and Spintronics, Research Institute of Electrical Communication, Toho
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ISHIBASHI Kenichi
Laboratory for Nanoelectronics and Spintronics, Research Institute of Electrical Communication, Toho
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YAMAGUCHI Ryotaro
Laboratory for Nanoelectronics and Spintronics, Research Institute of Electrical Communication, Toho
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ISHIBASHI Ken-ichi
Laboratory for Nanoelectronics and Spintronics, Research Institute of Electrical Communication, Toho
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WULANDARI Priastuti
Department of Electronic Chemistry, Tokyo Institute of Technology
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NAGAHIRO Takeshi
Department of Electronic Chemistry, Tokyo Institute of Technology
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MICHIOKA Kanae
Department of Electronic Chemistry, Tokyo Institute of Technology
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TAMADA Kaoru
Department of Electronic Chemistry, Tokyo Institute of Technology
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ISHIBASHI Ken-ichi
Research Institute of Electrical Communication, Tohoku University
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TANAKA Kohki
Research Institute of Electrical Communication, Tohoku University
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Ishibashi Ken-ichi
Research Institute Of Electrical Communication Tohoku University
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Ishibashi Ken-ichi
Laboratory For Immunopharmacology Of Microbial Products School Of Pharmacy Tokyo University Of Pharm
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Tamada Kaoru
Department Of Electronic Chemistry Tokyo Institute Of Technology
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Tamada Kaoru
Department Of Electronic Chemistry Interdisciplinary Graduate School Of Science And Engineering Toky
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Tanaka Kohki
Research Institute Of Electrical Communication Tohoku University
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Michioka Kanae
Department Of Electronic Chemistry Tokyo Institute Of Technology
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Yamaguchi Ryotaro
Laboratory For Nanoelectronics And Spintronics Research Institute Of Electrical Communication Tohoku
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Nagahiro Takeshi
Department Of Electronic Chemistry Tokyo Institute Of Technology
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Wulandari Priastuti
Department Of Electronic Chemistry Tokyo Institute Of Technology
著作論文
- Surfactant Adsorption on Single-Crystal Silicon Surfaces in TMAH Solution: Orientation-Dependent Adsorption Detected by In Situ Infrared Spectroscopy
- In-Situ Detection and Classification of DNA by Porous Alumina Filter in Conjugation with Infrared Absorption Spectroscopy
- In-situ Monitoring of DNA Hybridization Using Surface Infrared Spectroscopy
- Manipulation of DNA Molecules in Nanopores by Electric Field for Porous Silicon Based DNA Microarray Applications
- Coordination of Carboxylate on Metal Nanoparticles Characterized by Fourier Transform Infrared Spectroscopy
- In-Situ Surface Infrared Study of DNA Attachment and Hybridization at Si Surfaces