Rchr
J-GLOBAL ID:201801011314928717   Update date: Feb. 03, 2026

Oyama Kin-ichi

オヤマ キンイチ | Oyama Kin-ichi
Affiliation and department:
Other affiliations (1):
Homepage URL  (1): https://cif.os.rcms.nagoya-u.ac.jp/
Research field  (3): Synthetic organic chemistry ,  Analytical chemistry ,  Bioorganic chemistry
Research keywords  (4): organic synthesis ,  mass spectrometry ,  flavonoid ,  polyphenol
Research theme for competitive and other funds  (5):
  • 2018 - 2022 Studies on color change of seed coat of edible beans during maturation
  • 2018 - 2022 多アシル化アントシアニンの合成と青色花色発現に関与する超分子金属錯体の機能解析
  • 2014 - 2017 Development of reactions catalyzed by acidic azolium salts
  • 2008 - 2010 Studies on mechanism of flower coloration based on synthesis of anthocyanins
  • 2006 - 2008 Total synthesis of commelinin: A blue pigment from Commelina communis
Papers (53):
  • Kazushi Ando, Kin-ichi Oyama, Shin-ichiro Kawano, Hedong Zhang, Masaki Tsukamoto. One-pot reduction of TEMPO derivatives by triethylsilane and trifluoroacetic acid: isolation and structural analysis of the air-stable TEMPOH ammonium trifluoroacetate. Bulletin of the Chemical Society of Japan. 2025
  • Kin-ichi Oyama, Seanghai Hor, Masaki Tsukamoto, Hedong Zhang. Detection and Behaviors of TEMPO Derivatives in Seven Mass Spectrometry Ionization Methods. Journal of Mass Spectrometry. 2025
  • Gunik Lee, Riko Maruyama, Kexin Zou, Haifan Huang, Kin-ichi Oyama, Hisao Yoshida, Jun Kumagai. Radical Intermediates in Photocatalytic Activation of Carboxylic Acids: A Spin Trapping Study. The Journal of Physical Chemistry C. 2025
  • Hirofumi Amada, Yong-Chang Zhai, Koki Yamanaka, Qing-Jun Shui, Kin-ichi Oyama, Kazuhira Miwa, Hao-Sheng Lin, Yutaka Matsuo. Reaction mechanism with indano[60]fullerene bromide for evaporable fullerene derivatives. Chemical Communications. 2025
  • Yelin Zhang, Kentaro Takahama, Yukiko Osawa, Daichi Kuwahara, Rio Yamada, Kin-ichi Oyama, Masaki Honda. Characteristics of LED light-induced geometrical isomerization and degradation of astaxanthin and improvement of the color value and crystallinity of astaxanthin utilizing the photoisomerization. Food Research International. 2023. 174. 113553-113553
more...
MISC (6):
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Lectures and oral presentations  (8):
  • 7種類のイオン化法を用いたTEMPO誘導体の質量分析とイオン化の挙動
    (第56回中部化学関係学協会支部連合秋季大会 (岐阜大学) 2025)
  • アントシアニンと助色素を共吸着させた色素増感太陽電池の研究
    (日本農芸化学会大会講演要旨集(Web) 2018)
  • アルキル化フラボノイド類の合成と色素増感太陽電池への応用
    (日本化学会講演予稿集 2015)
  • 3-O-メチル化フラボン類とアントシアニジン類の合成及び色素増感太陽電池への応用
    (日本化学会講演予稿集 2014)
  • P-62 New synthetic methodologies of anthocyanin, flower pigment(Poster Presentation)
    (Symposium on the Chemistry of Natural Products, symposium papers 2008)
more...
Professional career (3):
  • Ph.D. (Nagoya University)
  • M.Eng. (Nagoya University)
  • 学士 (工学) (名古屋大学)
Work history (6):
  • 2025/04 - 現在 Nagoya University
  • 2025/04 - 現在 Nagoya University Research Center for Materials Science
  • 2023/04 - 2025/03 Nagoya University Research Center for Materials Science
  • 2021/04 - 2025/03 Nagoya University
  • 2018/04 - 2023/03 Nagoya University Research Center for Materials Science
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Awards (2):
  • 2022/03 - Award for Excelence to Authors Publishing in Bioscience, Biotechnology, and Biochemistry in 2021 Blue flower coloration of Corydalis ambigua requires ferric ion and kaempferol glycoside
  • 2008/02 - 有機合成化学協会 2007年度有機合成化学協会 大正製薬研究企画賞
Association Membership(s) (3):
THE SOCIETY OF SYNTHETIC ORGANIC CHEMISTRY, JAPAN ,  THE CHEMICAL SOCIETY OF JAPAN ,  JAPAN SOCIETY FOR BIOSCIENCE, BIOTECHNOLOGY, AND AGROCHEMISTRY
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