Rchr
J-GLOBAL ID:201101046785255948   Update date: Sep. 13, 2024

Mafune Fumitaka

マフネ フミタカ | Mafune Fumitaka
Affiliation and department:
Job title: Professor
Homepage URL  (1): http://park.itc.u-tokyo.ac.jp/Mafunelab/
Research field  (1): Basic physical chemistry
Research keywords  (16): nanoparticles ,  laser ablation ,  reaction ,  catalysis ,  cluster ,  質量分析法 ,  ナノ反応場 ,  光電子分光 ,  パルスレーザー ,  不均一反応 ,  金属微粒子 ,  電子状態 ,  マイクロプラズマ ,  液体ビーム ,  光散乱 ,  気液界面
Research theme for competitive and other funds  (14):
  • 2024 - 2030 遠赤外領域の振動分光による後期遷移金属の水素化物クラスターの結合特性の解明
  • 2024 - 2030 遠赤外領域の振動分光による後期遷移金属の水素化物クラスターの結合特性の解明
  • 2019 - 2022 Determination of activation energy of dissociation reaction of molecule on metal cluster by infrared photodissociation spectroscopy
  • 2014 - 2017 Development of X-ray diffraction of aerosol liquid droplets combined with a laser trapping method
  • 2014 - 2017 Physical preparation method of subnanometer metal nanoparticles
Show all
Papers (152):
  • Toshiaki Nagata, Ken Miyajima, Fumitaka Mafuné. Water storage capacity of closed-shell silicon oxyhydroxide cluster cations in the gas phase. Bulletin of the Chemical Society of Japan. 2024. 97. 3
  • Ken Miyajima, Toshiaki Nagata, Fumitaka Mafuné, Tomoya Ichino, Satoshi Maeda, Taizo Yoshinaga, Masahide Miura, Takahiro Hayashi. Size-dependent reactivity of Rh cationic clusters to reduce NO by CO in the gas phase at high temperatures. Physical Chemistry Chemical Physics. 2024. 26. 17. 13131-13139
  • Yangkun Wu, Ken Miyajima, Satoshi Kudoh, Toshiaki Nagata, Fumitaka Mafuné. Hydrogen Storage Mechanism by Gas-Phase Vanadium Cluster Cations Revealed by Thermal Desorption Spectrometry. The Journal of Physical Chemistry A. 2023. 127. 42. 8821-8827
  • Yufei Zhang, Fumitaka Mafuné. Hydrogen Storage Capacity of Single-Nb-Atom-Doped Al Clusters in the Gas Phase Revealed by Thermal Desorption Spectrometry. JOURNAL OF PHYSICAL CHEMISTRY LETTERS. 2023. 14. 25. 5734-5739
  • Keitaro Tatsukawa, Toshiaki Nagata, Masato Yamaguchi, Ken Miyajima, Fumitaka Mafuné. Reduction of nitric oxide adsorbed on iridium cluster cations at high temperatures. Chemical Physics Letters. 2023. 815. 140368-140368
more...
MISC (2):
  • 永田 利明, 真船 文隆. 赤外多光子解離分光による気相金属クラスター表面に吸着したNOの吸着構造の解明-Adsorption Forms of NO Molecules Adsorbed on Surfaces of Gas-Phase Metal Clusters Investigated by Infrared Multiple Photon Dissociation Spectroscopy-特集 吸着・表面反応研究の最前線. 表面と真空 = Vacuum and surface science / 日本表面科学会, 日本真空学会 編. 2023. 66. 6. 337-342
  • 立川慧太郎, 山口雅人, 宮島謙, 真船文隆. Heat induced changes of adsorption forms of NO on rhodium anion cluster studied by photoelectron spectroscopy. 分子科学討論会講演プログラム&要旨(Web). 2022. 16th
Patents (18):
Books (5):
  • 反応速度論
    裳華房 2017 ISBN:9784785334208
  • 物理化学
    化学同人 2016 ISBN:9784759816327
  • 高校生のための東大授業ライブ 純情編
    東京大学出版会 2010 ISBN:413003328X
  • 量子化学-基礎からのアプローチ
    化学同人 2008 ISBN:4759810846
  • 量子化学 (化学新シリーズ)
    裳華房 1997 ISBN:4785332050
Lectures and oral presentations  (237):
  • Photoelectron Spectroscopy of NO Attached Precious Metal Clusters under Heating Conditions
    (日本化学会春季年会講演予稿集(Web) 2022)
  • Reduction of the cobalt oxide clusters by hydrogen observed by concentration alternating of the reactant gas and the variable temperature mass spectrometry
    (日本化学会春季年会講演予稿集(Web) 2022)
  • Reactions of Cerium Oxide Clusters with Hydrogen Molecules Studied by Gas-Phase Thermal Desorption Spectrometry
    (日本化学会春季年会講演予稿集(Web) 2022)
  • Reaction processes of NO decomposition on rhodium clusters investigated by thermal desorption spectrometry in the gas phase
    (分子科学討論会講演プログラム&要旨(Web) 2021)
  • Reactivity of rhodium oxynitride clusters toward CO investigated by thermal desorption spectrometry
    (分子科学討論会講演プログラム&要旨(Web) 2021)
more...
Professional career (1):
  • Doctor of Science (The University of Tokyo)
Work history (2):
  • 2003/04 - 2010/11 The University of Tokyo Graduate School of Arts and Sciences
  • 2010/11 - School of Arts and Sciences, The University of Tokyo Professor
※ Researcher’s information displayed in J-GLOBAL is based on the information registered in researchmap. For details, see here.

Return to Previous Page