Rchr
J-GLOBAL ID:200901007509569404   Update date: May. 16, 2024

Tsukuda Satoshi

ツクダ サトシ | Tsukuda Satoshi
Affiliation and department:
Research field  (1): Nanomaterials
Research theme for competitive and other funds  (11):
  • 2023 - 2026 Synthesis of alloyed quantum dots with gradient quantum well structure
  • 2021 - 2023 Development of giant-shell quasi-type-II core-shell quantum dot scintillators
  • 2017 - 2021 New Developments in Oxide Semiconductors; Material Science and Device Technology of Narrow-Gap Wurtzite Oxides
  • 2015 - 2020 Physical Photochemical Functionalization of Oxide Nanotubes through Hierarchical Structure Tuning
  • 2016 - 2019 Creation of functional hybrid nanowires by direct formation of metal nanoparticles in polymer nanowires
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Papers (61):
  • Shuto Taniguchi, Satoshi Tsukuda. In-situ synthesis of CdS and Ag2S quantum dots in poly(diallyldimethylammonium chloride) gels. Japanese Journal of Applied Physics. 2024. 63. 4. 042003-042003
  • Issei Suzuki, Sakiko Kawanishi, Sage R. Bauers, Andriy Zakutayev, Zexin Lin, Satoshi Tsukuda, Hiroyuki Shibata, Minseok Kim, Hiroshi Yanagi, Takahisa Omata. N -type electrical conduction in SnS thin films. Physical Review Materials. 2021. 5. 12. 125405
  • Takahisa Omata, Hiroshi Asano, Satoshi Tsukuda, Masao Kita. White-light emission from zinc chalcogenide alloy quantum dots with gradient compositions. Journal of Luminescence. 2021. 232. 117876
  • Satoshi Tsukuda, Masao Kita, Takahisa Omata. Zn(Te1-xSex) quantum dots synthesized through a facile route and their band-edge and surface state driven visible-light emission. Journal of Luminescence. 2021. 231. 117829
  • Zhanyong Gu, Zhitao Cui, Zijing Wang, Ken Sinkou Qin, Yusuke Asakura, Takuya Hasegawa, Satoshi Tsukuda, Kenta Hongo, Ryo Maezono, Shu Yin. Carbon vacancies and hydroxyls in graphitic carbon nitride: Promoted photocatalytic NO removal activity and mechanism. Applied Catalysis B: Environmental. 2020. 279. 119376-119376
more...
MISC (19):
Patents (3):
  • コロイダル量子ドットの製造方法
  • 高分子多段ナノワイヤー及びスターバースト型ナノ粒子とそれらの製造法
  • イオンビーム照射によるセラミックナノワイヤーの製造法
Books (2):
  • 金属ナノ粒子、 微粒子の合成、調製と最新応用技術
    技術情報協会 2021 ISBN:9784861048623
  • 次世代ディスプレイへ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 ISBN:9784861047794
Lectures and oral presentations  (107):
  • ワンバッチ法による巨大シェルCdSe/CdS量子ドットの合成と光学特性
    (日本セラミックス協会2024年年会 2024)
  • ポリ(ジアリルジメチルアンモニウムクロリド)ゲル中での CdS及びAg2S量子ドットのその場合成
    (日本セラミックス協会2024年年会 2024)
  • ワンバッチ法による(Cd,Zn)Se量子ドットの合成と光学特性
    (日本セラミックス協会2023年年会 2023)
  • 量子ドット蛍光体の合成と光学特性
    (第15回日本セラミックス協会 マテリアル・ファブリケーション・デザイン研究会 2022)
  • Synthesis and optical properties of Zn(Te1-xSx) alloy quantum dots for display applications
    (2021 IMRAM-NTUT Online Joint Symposium 2021)
more...
Education (3):
  • 2006 - 2007 Osaka University Graduate School of Engineering
  • 2002 - 2004 Osaka University Graduate School of Engineering
  • 1998 - 2002 Niigata University Faculty of Engineering Department of Chemistry and Chemical Engineering
Professional career (1):
  • Doctor of Philosophy in Engineering (Osaka University)
Work history (5):
  • 2022/04 - 現在 Shizuoka Institute of Science and Technology Faculty of Science and Technology Department of Materials and Life Science
  • 2020/04 - 2022/03 Tohoku University Institute of Multidisciplinary Research for Advanced Materials
  • 2007/02 - 2019/03 Tohoku University Institute of Multidisciplinary Research for Advanced Materials
  • 2015/11 - 2018/03 Osaka University The Institute of Scientific and Industrial Research
  • 2004/04 - 2007/01 日本学術振興会 特別研究員(DC1)
Association Membership(s) (3):
日本セラミックス協会 ,  日本金属学会 ,  応用物理学会
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