Rchr
J-GLOBAL ID:201601001723396697   Update date: Mar. 26, 2024

Shibata Yosei

シバタ ヨウセイ | Shibata Yosei
Affiliation and department:
Job title: Assistant Professor
Homepage URL  (1): https://alcllan.nagaokaut.ac.jp/
Research field  (3): Electronic devices and equipment ,  Electric/electronic material engineering ,  Applied materials
Research keywords  (7): Control of molecular ordering ,  Thin-film engineering ,  Functionality of Organic Material Mixture ,  有機結晶 ,  Liquid Crystalline Device ,  IoT Device ,  Organic Semiconductor
Research theme for competitive and other funds  (13):
  • 2023 - 2026 Development of innovative organic heterojunction using aligned liquid crystal and photoelectric conversion effect
  • 2022 - 2025 メタサーフェス上の超微細な液晶配向制御の構築と機能性コンタクトレンズへの展開
  • 2021 - 2023 液晶の流動効果を利用する革新的エナジーハーベスティング素子の開発
  • 2020 - 2023 Search for organic quantum dot emission using molecular-control mold technology
  • 2020 - 2022 Development of wavelength/polarization-conversion coating films using liquid crystalline polymer and fluorescent dye for plant cultivation
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Papers (84):
  • Sakunosuke Abe, Amon Nakagawa, Yosei Shibata, Munehiro Kimura, Tadashi Akahane. Evaluation of polar alignment structure and surface anchoring energy in ferroelectric nematic liquid crystals by renormalized transmission spectroscopic ellipsometry. Applied Physics Express. 2024. 17. 3. 031001-031001
  • Shuhei Tanaka, Yusuke Takagawa, Shingo Maruyama, Yosei Shibata, Tomoyuki Koganezawa, Kenichi Kaminaga, Hideo Fujikake, Yuji Matsumoto. Epitaxial growth of copper phthalocyanine on a large single-grain of thin film alkyl perylene diimide. Japanese Journal of Applied Physics. 2024. 63. 2. 025502-025502
  • Sakunosuke Abe, Yosei Shibata, Munehiro Kimura, Tadashi Akahane. Self-Consistent Explanation of the Untwist Alignment of Ferroelectric Nematic Liquid Crystals with Decreasing Cell Thickness and Deviation of the Surface Easy Axis Experimented upon Using the Brewster Angle Reflection Method. Crystals. 2024. 14. 2. 157-157
  • Ayana Mizuno, Yosei Shibata, Hideo Fujikake, Atsushi Ono. Plasmonic Color Switching by a Combination Device with Nematic Liquid Crystals and a Silver Nanocube Monolayer. ACS Omega. 2023. 8. 44. 41579-41585
  • Shintaro Aso, Kisho Yamamoto, Ken-ichi Aoshima, Ryo Higashida, Nobuhiko Funabashi, Junichi Shibasaki, Takahiro Ishinabe, Yosei Shibata, Hideo Fujikake, Kenji Machida. Ferroelectric liquid crystal array driven by a two-layer electrode with a 1 × 1 μm pixel pitch for light modulation in electro-holography. Journal of the Society for Information Display. 2023
more...
MISC (32):
  • Yosei Shibata. 自己組織化現象を活用した分子配向デバイスの先駆的機能創出. 2022. 36. 5
  • 磯前慶友, 石鍋隆宏, 柴田陽生, 藤掛英夫. 1μmピッチの画素駆動に向けた格子状壁構造内の液晶配向制御. 日本液晶学会誌「液晶」. 2021. 25. 1. 46-53
  • Yosei Shibata. Study on liquid crystal devices and fabrication technique for structural deformation. Journal of the Japanese Liquid Crystal Society. 2021. 25. 1. 54-63
  • 磯前慶友, 石鍋隆宏, 柴田陽生, 藤掛英夫. 超高解像度液晶素子の実現へ-誘電体格子隔壁を伴う1μmピッチ画素の液晶配向制御-. 日本光学会誌 (2020). 2020. Vol.49. no.6. pp.231
  • 藤掛英夫, 磯前慶友, 千田一馬, 柴田陽生, 石鍋隆宏. 液晶空間光位相変調素子の超高解像度化技術 -実用的な電子ホログラフィ立体表示に向けて-. 応用物理学会フォトニクスニュース. 2019. 5. 4. 156-161
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Patents (4):
  • 液晶素子及びその製造方法
  • 可撓性の調光デバイス
  • リバースモードの高分子分散型調光デバイスの製造方法
  • 有機薄膜光電変換素子及びこれを用いた有機薄膜太陽電池
Books (6):
  • ポリイミドの高機能設計と応用技術
    技術情報協会 2022
  • ストレッチャブルエレクトロニクスの技術動向
    (株)シーエムシー出版 2021 ISBN:9784781316079
  • 次世代ディスプレイの応用に向けた材料、プロセス技術の開発動向
    技術情報協会 2020
  • 空間立体表示とユーザーインタフェース
    S&T出版 2019
  • IEEE Consumer Electronics Magazine
    IEEE 2019
more...
Lectures and oral presentations  (176):
  • 液晶・高分子複合構造を用いた無線通信用デバイスの開拓
    (日本液晶学会フォトニクスフォーラム講演会2022 2022)
  • Formation of Nano-Sized Crystals of Organic Phosphor on Substrate with Fine-Hole Structure
    (International Display Workshops 2022)
  • Evaluation of Dielectric Loss in Randomly-Aligned Liquid Crystal Molecules for Millimeter-Wave Reflect Array Antenna
    (International Display Workshops 2022)
  • Thick LC Devices Stabilized by Polymer Wall Surface for Millimeter Wave Control
    (International Display Workshops 2022)
  • 液晶性高分子を用いた農業用波長・偏光制御膜の塗布形成
    (東北大学電気通信研究所-静岡大学共同プロジェクト夏季研究会~コヒーレント波に基づく学際的先端科技術の創成 2022)
more...
Education (3):
  • 2010 - 2013 Tokyo Institute of Technology Graduate School, Division of Integrated Science and Engineering 物質科学創造専攻
  • 2008 - 2010 Yamagata University
  • 2005 - 2008 Yamagata University Faculty of Engineering 電気電子工学科
Professional career (2):
  • Ph. D. (engineering) (Tokyo Institute of Technology)
  • Master Degree (Yamagata University)
Work history (4):
  • 2023/04 - 現在 Nagaoka University of Technology Department of Electric, Electronics and Information Engineering, Graduate School of Engineering Assistant Professor
  • 2015/10 - 2023/03 Tohoku University Graduate School of Engineering Department of Electronic Engineering Assistant Professor
  • 2015/04 - 2015/09 AIST Flexible Electronics Research Center Postdoctoral
  • 2013/04 - 2015/03 AIST Reseach Center for Photovoltaic Technologies Postdoctoral
Committee career (8):
  • 2024/02 - 現在 International Display Workshop Venue Committee
  • 2023/06 - 現在 電子情報通信学会 和文論文誌C編集委員
  • 2023/04 - 現在 Active Matrix Display Workshop (AMD-WS) Workshop Vice Chair
  • 2022/04 - 2024/03 JLCS representative
  • 2022/04 - 2024/03 応用物理学会・有機分子バイオエレクトロニクス分科会 幹事
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Awards (26):
  • 2023/12 - 一般社団法人映像情報メディア学会 技術委員会 優秀研究発表賞 ターフェニル構造を有する液晶分子を用いたミリ波誘電体損失の低減
  • 2023/02 - The Most Voted Presentation Award Reduction of Dielectric Loss in Millimeter-Wave Band using Liquid Crystal Material with Terphenyl Group
  • 2022/12 - International Display Workshop (IDW'22) Outstanding Poster Paper Award Evaluation of Dielectric Loss in Randomly-Aligned Liquid Crystal Molecules for Millimeter-Wave Reflect Array Antenna
  • 2022/12 - Encouragement Award from Minoru Ishida Foundation
  • 2021/12 - International Display Workshops Outstanding Lightning Talk Paper Award Quantitative Evaluation of LC Alignment Fluctuation in Random Phase Disturbing Devices for Speckle Noise Reduction in Electronic Holography
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Association Membership(s) (4):
Institute of Electronics, Information and Communication Engineering ,  日本液晶学会 ,  M&BE ,  Japan Society of Applied Physics
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