Okada Hiroyuki | Faculty Of Engineering Toyama University
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概要
関連著者
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Okada Hiroyuki
Faculty Of Engineering Toyama University
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Onnagawa Hiroyoshi
Department Of Electronics And Computer Science Toyama Universiry
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岡田 裕之
富山大学工学部理工学研究科ナノ新機能物質科学専攻
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Okada H
Department Of Electronics And Computer Science Toyama University
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Okada Hiroyuki
Graduate School Of Science & Engineering University Of Toyama
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Okada Hiroyuki
Graduate School Of Science And Technology University Of Toyama
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Okada H
Faculty Of Engineering University Of Toyama
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中 茂樹
富山大学工学部 理工学研究科 ナノ新機能物質科学専攻
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Onnagawa Hiroyoshi
Faculty Of Engineering Toyama University
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岡田 裕之
富山大学工学部電気電子システム工学科
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Okada Hiroyuki
Optoelectronics Laboratories Sumitomo Electric Industries Ltd.
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岡田 裕之
富山大・院理工:富山大・自然科学研究支援センター
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中 茂樹
富山大・院理工
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Onnagawa Hiroyoshi
Toyama Univ. Toyama Jpn
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Onnagawa H
Department Of Electric And Electronic Engineering Faculty Of Engineering Toyama University
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岡田 裕之
Graduate School of Science and Technology, University of Toyama
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Onnagawa Hiroyoshi
Department Of Electronics & Computer Science Toyama University
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OKADA Hiroyuki
Faculty of Engineering, University of Toyama
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NAKA Shigeki
Faculty of Engineering at Toyama University
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Naka Shigeki
Graduate School of Science and Technology, University of Toyama
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Naka Shigeki
Graduate School Of Science & Engineering University Of Toyama
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NAKA Shigeki
University of Toyama
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Okada H
Univ. Toyama Toyama Jpn
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ONNAGAWA Hiroyoshi
Faculty of Engineering, University of Toyama
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岡田 裕之
富山大学大学院理工学研究部
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Okada Hiroyuki
Graduate School Of Science And Engineering University Of Toyama
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岡田 裕之
富山大学大学院理工学教育部電気電子システム工学専攻:富山大学自然科学研究支援センター
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岡田 裕之
富山大学大学院理工学教育部
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松井 健太
富山大学大学院理工学教育部
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SHIBATA Miki
Faculty of Engineering, Toyama University
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Shimada Hiroyuki
Faculty Of Engineering Toyama University
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中 茂樹
富山大学大学院理工学教育部電気電子システム工学専攻
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中 茂樹
富山大学大学院理工学教育部
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岡田 裕之
富山大学大学院理工学教育部:富山大学自然科学研究支援センター
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中 茂樹
富山大学大学院理工学研究部電気電子システム工学専攻
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宮林 毅
ブラザー工業株式会社
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井上 豊和
ブラザー工業株式会社
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宮林 毅
ブラザー工業 (株)
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王 照奎
富山大学工学部理工学研究科ナノ新機能物質科学専攻
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中 茂樹
富山大学工学部理工学研究科ナノ新機能物質科学専攻
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岡田 裕之
富山大学理工学研究部
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岡田 裕之
富山大学工学部 理工学研究科 ナノ新機能物質科学専攻
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中 茂樹
富山大学工学部
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王 照奎
富山大学工学部 理工学研究科 ナノ新機能物質科学専攻
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TORIYAMA Kazuhisa
Faculty of Media Science, Saitama College
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SUGIMORI Shigeru
Toyama National College of Technology
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MATSUSHITA Yohsuke
Faculty of Engineering, Toyama University
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Naka Shigeki
Graduate Scholl of Science and Engineering, University of Toyama, 3190 Gofuku, Toyama 930-8555, Japan
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Okada Hiroyuki
Graduate Scholl of Science and Engineering, University of Toyama, 3190 Gofuku, Toyama 930-8555, Japan
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中 茂樹
富山大学理工学研究部
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柳 順也
富山大学大学院理工学研究部
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MA Heng
Faculty of Engineering, Toyama University
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Shimada Hiroyuki
Graduate School Of Science And Engineering University Of Toyama
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SHIMADA Hiroyuki
Faculty of Engineering, Toyama University
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Shibata M
Graduate School Of Science And Engineering University Of Toyama
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Shibata Miki
Department Of Electronic Engineering Toyama University
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Matsushita Yosuke
Graduate School Of Science And Engineering University Of Toyama
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小山 知弘
富山大・院理工
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柳 順也
富山大学理工学研究部
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松井 健太
富山大学理工学研究部
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Naka Shigeki
Graduate School Of Science And Engineering University Of Toyama
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XU Jun
Institute of Advanced Materials, Fudan University
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SUGIMORI Sigeru
Toyama National College of Technology
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ONNAGAWA Hiroyoshi
Graduate School of Science and Engineering, University of Toyama
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Luo Yong-chun
Faculty Of Engineering Toyama University
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MIYABAYASHI Takeshi
Innovation Plaza Tokai, Japan Science & Technology Agency
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INOUE Toyokazu
Innovation Plaza Tokai, Japan Science & Technology Agency
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Isoda Junpei
Faculty Of Engineering Toyama University
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Yanagi Junya
Faculty Of Engineering Toyama University
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Miyashita Takuya
Faculty Of Engineering Toyama University
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Shimamura Toru
Faculty of Engineering, Toyama University, 3190 Gofuku, Toyama 930-8555, Japan
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Shimamura Toru
Faculty Of Engineering Toyama University
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Onnagawa Hiroyoshi
Graduate School Of Science & Engineering University Of Toyama
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有沢 崇志
富山大学理工学研究部
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本野 由紘
富山大学理工学研究部
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女川 博義
富山大学理工学研究部
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Xu J
Institute Of Advanced Materials Fudan University
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河原林 順
名古屋大・工
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岡田 裕之
富山大学 大学院 理工学研究部
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中 茂樹
富山大学 大学院 理工学研究部
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宮下 拓也
富山大学大学院理工学研究部
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平澤 銀太
富山大学大学院理工学研究部
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内村 拓矢
富山大学大学院理工学研究部
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Inoue Akihiro
Toyama National College Of Technology
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XU Jun
Science University of Tokyo in Yamaguchi
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XU Jun
Faculty of Engineering, Toyama University
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TORIYAMA Kazuhisa
Department of Information Technology, Saitama College
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Furukawa K
Yokohama Research Center Chisso Corporation
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Furukawa K
Department Of Environmental Engineering Faculty Of Engineering Osaka University
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UCHIDA Manabu
Yokohama Research Center, Chisso Corporation
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FURUKAWA Kenji
Yokohama Research Center, Chisso Corporation
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SHINNO Kazuhisa
Faculty of Engineering at Toyama University
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ANADA Hiroshi
Faculty of Engineering at Toyama University
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IZUMIZAWA Takenori
Yokohama Research Center at Chisso Corporation
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Xu J
Akita Univ. Akita Jpn
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Xu J
National Inst. Advanced Industrial Sci. And Technol. (aist) Ibaraki Jpn
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Takada Eiji
Toyama National College Of Technology
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MATSUSHITA Yohsuke
Graduate School of Science and Engineering, University of Toyama
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YANAGI Junya
Faculty of Engineering, Toyama University
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MIYASHITA Takuya
Faculty of Engineering, Toyama University
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Yanagi Junya
Graduate School Of Science And Engineering University Of Toyama
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NAGAI Tsutomu
Graduate School of Science & Engineering, University of Toyama
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KIMURA Takuma
Graduate School of Science & Engineering, University of Toyama
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ECHIGO Tadahiro
Faculty of Engineering, Toyama University
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SATOH Ryuichi
Faculty of Engineering, Toyama University
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Miyabayashi Takeshi
Brother Ind. Ltd. Nagoya Jpn
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Kawarabayashi Jun
Nagoya University
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Imai Hideyuki
Toyama National College Of Technology
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Furukawa Kenji
Yokohama Research Center Chisso Corporation
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ISHIMARU Masashi
Faculty of Engineering, Toyama University
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Ma Heng
Department Of Pathology Jinling Hospital
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Kimura Takuma
Graduate School Of Science & Engineering University Of Toyama
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Nomura Takashi
Faculty Of Engineering Kanazawa University
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KAMIYA Kazuhide
Faculty of Engineering, Toyama Prefectural University
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MIYASHIRO Hiroshi
Faculty of Engineering, Toyama Prefectural University
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TASHIRO Hatsuzo
Faculty of Engineering, Toyama University
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YOSHIKAWA Kazuo
Faculty of Engineering, Toyama University
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Tashiro Hatsuzo
Faculty Of Engineering Toyama University
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Kamiya Kazuhide
Faculty Of Engineering Toyama Prefectural University
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Yoshikawa Kazuo
Faculty Of Engineering Toyama University
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NAMITO Yoshihito
High Energy Accel. Res. Org.
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Azuma H
National Aerospace Lab. Tokyo Jpn
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Suzuki K
Department Of Applied Chemistry Nagoya Institute Of Technology
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Nagai Tsutomu
Graduate School Of Science & Engineering University Of Toyama
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Miyashiro Hiroshi
Faculty Of Engineering Toyama Prefectural University
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Saito Katsuhiro
Nagoya Inst. Of Technol. Nagoya Jpn
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Saito K
Department Of Applied Chemistry Nagoya Institute Of Technology
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Uchida Manabu
Yokohama Research Center Chisso Corporation
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TAKADA Akinari
Toyama National College of Technology
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OKADA Hiroyuki
University of Toyama
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NAKAMURA Takashi
Tohoku University
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Namito Yoshihito
High Energy Accelerator Research Organization (kek)
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Xu Jun
Faculty Of Engineering Toyama University
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TAKEMATSU Takeshi
Faculty of Engineering, Toyama University
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Toriyama K
Saitama Coll. Saitama Jpn
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Toriyama Kazuhisa
Department Of Information Technology Saitama College
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Takematsu Takeshi
Faculty Of Engineering Toyama University
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Echigo Tadahiro
Department Of Electric And Electronic Engineering Faculty Of Engineering Toyama University
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NOMURA Kuniaki
Graduate School of Science & Engineering, University of Toyama
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Okada H
Toyama Univ. Toyama Jpn
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Fujibayashi Katsutoshi
Faculty Of Engineering Toyama University
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Kagajyo Taichi
Faculty of Engineering, Toyama University, 3190 Gofuku, Toyama 930-8555, Japan
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Kagajyo Taichi
Faculty Of Engineering Toyama University
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Nomura Kuniaki
Graduate School Of Science & Engineering University Of Toyama
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小山 知弘
富山大学大学院理工学教育部電気電子システム工学専攻
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堀岡 拓哉
富山大・院理工
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Naka Shigeki
Graduate School Of Science And Technology University Of Toyama
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LOU Yanhui
Jiangsu Key Laboratory for Carbon-Based Functional Materials and Devices, Institute of Functional Nano and Soft Materials (FUNSOM), Soochow University
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WANG Zhaokui
Jiangsu Key Laboratory for Carbon-Based Functional Materials and Devices, Institute of Functional Nano and Soft Materials (FUNSOM), Soochow University
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Lou Yanhui
Jiangsu Key Laboratory For Carbon-based Functional Materials And Devices Institute Of Functional Nano And Soft Materials (funsom) Soochow University
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Wang Zhaokui
Jiangsu Key Laboratory For Carbon-based Functional Materials And Devices Institute Of Functional Nano And Soft Materials (funsom) Soochow University
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Naka Shigeki
Faculty of Engineering, University of Toyama, 3190 Gofuku, Toyama 930-8555, Japan
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Inoue Toyokazu
Innovation Plaza Tokai, Japan Science and Technology Agency, 23-1 Ahara-cho, Minami-ku, Nagoya 457-0063, Japan
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Inoue Toyokazu
Innovation Plaza Tokai, Japan Science & Technology Agency, 23-1 Ahara-cho, Minami-ku, Nagoya 457-0063, Japan
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Satoh Ryu-ichi
Faculty of Engineering, University of Toyama, 3190 Gofuku, Toyama 930-8555, Japan
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Sugimori Sigeru
Toyama National College of Technology, 13 Hongo-cho, Toyama 939-8630, Japan
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Onnagawa Hiroyoshi
Faculty of Engineering, University of Toyama, Toyama 930-8555, Japan
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Onnagawa Hiroyoshi
Faculty of Engineering, University of Toyama, 3190 Gofuku, Toyama 930-8555, Japan
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Onnagawa Hiroyoshi
Faculty of Engineering, Toyama University, 3190 Gofuku, Toyama 930-8555, Japan
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Toriyama Kazuhisa
Faculty of Media Science, Saitama College, Saitama 347-8503, Japan
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TORIYAMA Kazuhisa
Department of Chemistry, University of Sheffield
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Hyodo Takahiro
Faculty of Engineering, Toyama University, 3190 Gofuku, Toyama 930-8555, Japan
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Morita Fumiya
Faculty of Engineering, Toyama University, 3190 Gofuku, Toyama 930-8555, Japan
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Sugimori Sigeru
Toyama National College of Technology, Toyama 939-8630, Japan
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Shibata Miki
Faculty of Engineering, University of Toyama, 3190 Gofuku, Toyama 930-8555, Japan
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Shibata Miki
Faculty of Engineering, Toyama University, 3190 Gofuku, Toyama 930-8555, Japan
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Matsushita Yohsuke
Faculty of Engineering, Toyama University, 3190 Gofuku, Toyama 930-8555, Japan
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Matsushita Yohsuke
Faculty of Engineering, University of Toyama, 3190 Gofuku, Toyama 930-8555, Japan
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Miyabayashi Takeshi
Innovation Plaza Tokai, Japan Science & Technology Agency, 23-1 Ahara-cho, Minami-ku, Nagoya 457-0063, Japan
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Satoh Ryuichi
Faculty of Engineering, Toyama University, 3190 Gofuku, Toyama 930-8555, Japan
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Okada Hiroyuki
Faculty of Engineering, University of Toyama, 3190 Gofuku, Toyama 930-8555, Japan
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Ma Heng
Department of Physics, Henan Normal University, Henan 453007, China
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Ma Heng
Faculty of Engineering, Toyama University, 3190 Gofuku, Toyama 930-8555, Japan
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Ma Heng
Faculty of Physics and Information, He Nan Normal University, Xin Xiang He Nan 453007, China
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Ishimaru Masashi
Faculty of Engineering, Toyama University, 3190 Gofuku, Toyama 930-8555, Japan
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Yanagi Junya
Faculty of Engineering, University of Toyama, 3190 Gofuku, Toyama 930-8555, Japan
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Miyashita Takuya
Faculty of Engineering, Toyama University, 3190 Gofuku, Toyama 930-8555, Japan
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Okada Hiroyuki
Faculty of Engineering, University of Toyama, Toyama 930-8555, Japan
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Shimada Hiroyuki
Faculty of Engineering, Toyama University, 3190 Gofuku, Toyama 930-8555, Japan
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Shimada Hiroyuki
Faculty of Engineering, University of Toyama, 3190 Gofuku, Toyama 930-8555, Japan
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Xu Jun
Science University of Tokyo in Yamaguchi, 1-1-1 Daigaku-dori, Onoda 756-0884, Japan
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Matsushita Yohsuke
Graduate School of Engineering, Tohoku University
著作論文
- 混合単層有機EL素子キャリア注入特性の検討(発光型/非発光型ディスプレイ)
- ルブレンドープ混合単層有機EL素子の特性と信頼性評価(有機薄膜・複合膜とデバイス応用,一般)
- フレキシブルマルチカラー自己整合有機ELパネル
- フレキシブルマルチカラー自己整合有機ELパネル(ディスプレイに関する技術全般,LCD(バックライトを含む),PDP,有機/無機EL,CRT,FED,VFD,LEDなどのディスプレイに関するデバイス,部品・材料及び応用技術,発光型/非発光型ディスプレイ合同研究会)
- 自己整合インクジェットプリント法による有機デバイスの開発
- インクジェット法を用いた自己整合有機ダイオード
- インクジェット法を用いた自己整合有機ダイオード(有機材料,一般)
- エキシマレーザを用いた有機膜の直接パターニング技術(半導体材料・デバイス)
- 混合単層有機EL素子キャリア注入特性の検討
- フレキシブル有機ELのためのインクジェットプリント技術
- 有機ELパネルのインクジェット印刷技術
- 有機TFTの電気的評価 (特集 有機EL・有機TFTの最新事情)
- インクジェット印刷技術による有機デバイス (特集 プリンテッド・エレクトロニクス最前線)
- 両面発光有機ELパネルとフレキシブル応用(センサー,デバイス,一般)
- 塗布形有機薄膜の形成と有機EL素子応用 (特集 有機EL研究の最前線)
- IJP方式によるセルフアライン有機ELデバイス (特集 インクジェット技術による製造改革)
- 自己整合有機トランジスタの有機エレクトロニクスへの応用展開 (特集 フレキシブルディスプレイ--実用化に向けた材料技術の開発動向)
- 自己整合インクジェットプリント法を用いた有機EL素子の作製 (マテリアルフォーカス:オプトロニクス 2ヶ月集中企画! ダークスポット対策,長寿命化への闘い 有機ELの技術トレンド(マテリアル・製造プロセス編))
- 自己整合技術を用いたフレキシブル有機EL素子と非接触電磁給電発光 (特集 有機材料により実現するフレキシブル電子・光集積デバイス)
- フレキシブルマルチカラー自己整合有機ELパネル (情報ディスプレイ)
- 混合単層有機EL素子キャリア注入特性の検討(発光型/非発光型ディスプレイ)
- Liquid Crystal System as Molecular Machinery : Investigation of Dynamic Impedance Matching between Molecular Core and Terminal Groups Using Rotor-Bearing Model
- White Organic Electroluminescent Devices with Mixed Single Layer (Special Issue on Advanced Emissive Displays)
- 2008年リフレッシュ理科教室北陸・信越支部富山地区「真空と光が拓く未来の世界」開催報告
- 超軽量・フレキシブル化を目指した有機電子デバイスの応用展開(超高速情報伝達デバイスの創製と応用,プロジェクト研究成果報告)
- 塗布技術で作製する有機EL素子 (特集 有機EL研究開発の最前線)
- Organic Multi-Function Diodes Operable for Emission and Photo detection Modes
- Top-Absorption Organic Photodiodes Suitable for Device Integration
- Organic Bi-Function Matrix Array
- Organic Field-Effect Transistor Integrated Circuits using Self-Alignment Process Technology
- Build-on Technology of Bi-Directional Optical Communication System using Bi-Functional Organic Diodes
- Sprayed Organic Electrophosphorescent Devices with Small Organic Molecules
- A Method of Analyzing Zone-plate Interferograms Using a Nematic Liquid-crystal Cell
- Study on Luminescence of Organic Thin Films Using Field Emitter Arrays (第5回日韓台中情報ディスプレイ合同研究会(ASID '99)) -- (Organic LED)
- Study on Luminescence of Organic Thin Films Using Field Emitter Arrays
- インクジェットによる有機ELデバイス作製 (特集 エレクトロニクスと印刷)
- Mechanical Model of Rotation Frame for Phase Stability and Molecular Conformation in Liquid Crystal System
- Temperature Dependence of Physical Constants with Varied Molecular Length and Position of Fluorine Substituents in Phenyl-bicyclohexane Core Liquid Crystals
- A Mechanical Model Study on Correlations of Liquid Crystal Phase and Dynamic Parameters in Linear Molecules
- Mechanical Rotor Model for Fluorinated Terphenyl Liquid Crystals
- 有機ELへの応用と展望 (特集 次世代を担う導電性高分子材料--開発動向と応用)
- インクジェットを用いた有機EL素子と印刷・塗布による複合有機EL技術 (特集 有機ELの新展開)
- 2010年日本液晶学会講演会報告
- Application of Organic Photodiodes to X-ray Measurements : A Feasibility Study
- Investigation of organic photoconductors
- Characteristics of Modulated Microdomain Switching Using Nematic Liquid Crystals
- Organic field-effect transistors with high-κ HfO2/resin double gate insulator
- バーコート法を用いた有機EL素子の作製(有機ナノ材料・構造制御,デバイス応用,一般)
- Fully self-aligned oxide-semiconductor field-effect transistors
- Fully Self-Aligned Organic Field-Effect Transistors
- Alignment of Nematic Liquid Crystal Molecules Using Nanometer-Sized Ultrafine Patterns By Electron Beam Exposure Method
- Top-Absorption Organic Photodiodes Suitable for Device Integration
- Top-Emission Organic Light-Emitting Diodes with Ink-Jet Printed Self-Aligned Emission Zones
- 招待講演 バーコート法による微細構造体基板上への有機EL素子の作製 (有機エレクトロニクス)
- C-9-7 バーコート法による微細構造体基板上への有機EL素子の作製(C-9.電子ディスプレイ,一般セッション)
- C-13-1 傾斜接合を持つ有機太陽電池(C-13.有機エレクトロニクス,一般セッション)
- Improved Cathode Interface Contact in Poly(3-hexylthiophene) and 1-(3-Methoxycarbonyl)-propyl-1-phenyl-(6,6)C61 Based Organic Bulk Heterojunction Solar Cells by Introducing Compressive Stress
- Self-Aligned Bank Formation of Organic Electroluminescent Devices Using Ink-Jet Printing Method
- Organic Multifunction Diodes Operable for Emission and Photodetection Modes
- Microdeflection Liquid Crystal Display Modes Using Eight-Division Electrodes
- Self-Aligned Organic Field-Effect Transistors Using Back-Surface Exposure Method
- Vertically Aligned Nematic Liquid Crystal Display Using Dual-Interference Exposure Method
- Organic Bi-function Matrix Array
- Numerical Evaluation of the Relative Value of Dielectric Anisotropy and Order Parameter in Fluorinated Nematic Liquid Crystals