• A
  • A
  • A
日本語 Help
Science and technology information site for articles, patents, researchers information, etc.
Rchr
J-GLOBAL ID:201601009106753572   Update date: Feb. 06, 2025

Yuichi Kitamoto

キタモト ユウイチ | Yuichi Kitamoto
Affiliation and department:
Job title: 助教
Research field  (3): Functional solid-state chemistry ,  Synthetic organic chemistry ,  Structural/physical organic chemistry
Research keywords  (6): 超分子ポリマー ,  機能性有機ホウ素化合物 ,  超分子化学 ,  キラルテクノロジー ,  熱活性化遅延蛍光材料 ,  有機合成化学
Research theme for competitive and other funds  (6):
  • 2023 - 2026 連続的金属-ホウ素交換反応が実現する高色純度遅延蛍光性トリアリールボラン類の創出
  • 2020 - 2023 種々の元素で架橋したプラナーボラン類の創製とプラナーボラン二量体ホストの機能開発
  • 2016 - 2019 Exploration of photocontrollable pathway complexity
  • 2014 - 2019 Multicomponent pi-Assembly Figuration
  • 熱活性化遅延蛍光を利用したプラスチックシンチレータの高性能化
Show all
Papers (23):
more...
MISC (9):
more...
Patents (7):
  • I - CONJUGATED BORON COMPOUND , ELECTRONIC DEVICE , AND METHODS RESPECTIVELY FOR PRODUCING TRIARYLBORANE AND INTERMEDIATE THEREOF
  • TRIARYLBORON COMOUND, ORGANIC ELECTROLUMINESCENCE ELEMENT, DISPLAY DEVICE, AND LIGHTING DEVICE
  • ORGANIC BORANE COMPLEX , COMPOSITION CONTAINING ORGANIC BORANE , AND ORGANIC ELECTROLUMINESCENT ELEMENT
  • Organic borane complex, composition containing organic borane, and organic electroluminescent element
  • -Conjugated boron compound, electronic device, and methods respectively for producing triarylborane and intermediate thereof
more...
Books (3):
  • Photoactive Functional Soft Materials: Preparation, Properties, and Applications
    Edited by Quan Li, Wiley-VCH 2019 ISBN:3527344829
  • 次世代のポリマー・高分子開発、新しい用途展開と将来展望-生分解、自己修復、生物模倣、刺激応答、超分子、医療用途など
    2019
  • 刺激応答性高分子ハンドブック
    エヌ・ティー・エス 2018
Lectures and oral presentations  (83):
  • 熱活性化遅延蛍光を利用したシンチレータの高性能化
    (極限的励起状態の形成と量子エネルギー変換研究グループ 第17回研究会(兼 第33回次世代先端光科学研究会) 2024)
  • Utilization of Thermally Stimulated Delayed Fluorescence in Organic Scintillators
    (The 16th Asian Conference on Organic electronics (A-COE 2024) 2024)
  • Preparation of solid-state electrolytes from lithium and boroxine compounds and evaluation of their lithium-ion conductivities
    (2024)
  • Highly fluorescent nanoparticles of triaryl borane-based intramolecular charge transfer-type emitters
    (2024)
  • Complexation of heteroatom-bridge-type planar tyiphenylboranes with various anions and application as lithium solid electrolytes
    (2024)
more...
Education (3):
  • 2011 - 2014 東北大学大学院 工学研究科 バイオ工学専攻 博士課程後期
  • 2009 - 2011 東北大学大学院 環境科学研究科 環境科学専攻 博士課程前期
  • 2005 - 2009 Tohoku University Faculty of Engineering
Professional career (1):
  • Doctor of Engineering (Tohoku University)
Work history (5):
  • 2019/04 - 現在 Tohoku University
  • 2017/10 - 2019/03 Chiba University
  • 2017/04 - 2017/09 コニカミノルタ株式会社 要素技術開発センター
  • 2015/04 - 2017/03 Tohoku University New Industry Creation Hatchery Center
  • 2014/04 - 2015/03 Tohoku University Environment Conservation Center
Committee career (6):
  • 2024/03 - 現在 The Tohoku Branch of the Chemical Society of Japan Auditor
  • 2023/03 - 2024/02 The Tohoku Branch of the Chemical Society of Japan Branch Secretary-General of the Tohoku Branch
  • 2023/03 - 2023/12 International Symposium for the 80th Anniversary of the Tohoku Branch of the Chemical Society of Japan (2023 Joint Meeing of the Tohoku Area Chemistry Societies) Branch Secretary-General of the Tohoku Branch
  • 2022/04 - 2023/03 日本化学会東北支部 幹事
  • 2021/11 - 2022/11 第33回万有仙台シンポジウム事務局
Show all
Awards (9):
  • 2024/09 - Poster award Preparation of solid-state electrolytes from lithium and boroxine compounds and evaluation of their lithium-ion conductivities
  • 2023/07 - The 13th SPSJ International Polymer Conference (IPC2023) IPC2023 Poster Award: ACS Polymers Au Award - sponsored by American Chemical Society Control over Supramolecular Chirality through Photo-regulated Heterogeneity during Nucleation Process
  • 2022/12 - 応用物理学会 極限的励起状態の形成および量子エネルギー変換研究グループ 第8回研究会(兼 第24回次世代先端光科学研究会) 若手奨励賞 熱活性化遅延蛍光分子添加プラスチックシンチレータのエネルギー収率の解析
  • 2021/10 - Poster award N,O-hybrid-bridge-type planar triphenylboranes: Synthesis and effects of the bridging atoms on their photophysical properties and Lewis acidity
  • 2019/11 - 奨励賞 Inversion of Supramolecular Chirality by Photoisomerization
Show all
Association Membership(s) (3):
基礎有機化学会 ,  THE SOCIETY OF SYNTHETIC ORGANIC CHEMISTRY, JAPAN ,  THE CHEMICAL SOCIETY OF JAPAN
※ Researcher’s information displayed in J-GLOBAL is based on the information registered in researchmap. For details, see here.

Return to Previous Page