Updated on 2026/03/20

写真a

 
YAMAMOTO MASANORI
 
Organization
School of Materials and Chemical Technology Assistant Professor
Title
Assistant Professor
Profile
Assistant Professor at Institute of Science Tokyo
RSC Advances Outstanding Reviewer 2023 & 2024
代表論文(筆頭責任著者 or 最終責任著者)
Molecular Catalysis using Organic Radicals:
S. Kosaka et al. Green Chem. 2025, 27, 2743‒2750
Chemistry of Carbon Materials:
M. Yamamoto et al. Chem. Sci. 2024, 15, 1953‒1965
K. Yamazaki et al. Phys. Chem. Chem. Phys. 2023, 25, 32972‒32978
M. Yamamoto et al. Chem. Sci. 2022, 13, 3140‒3146
M. Yamamoto et al. ACS Appl. Mater. Interfaces 2021, 13, 38613‒38622
Chemistry of Transition Metal Oxides:
M. Yamamoto et al. manuscript in preparation
M. Yamamoto et al. Inorg. Chem. 2023, 62, 14580‒14589
Polymer and Analytical Chemistry:
N. Yamato et al. Chem. Commun. 2022, 58, 12106‒12109

 

External link

Research Areas

  • Nanotechnology/Materials / Inorganic materials and properties  / Applied Chemistry / Angewandte Chemie

Professional Memberships

Papers

  • The solid-polymer-electrolyte co-electrolysis of O2 and water to pure 26 wt% H2O2 aqueous solutions with 81% current efficiency

    Ichiro Yamanaka, Yuhei Kojima, Ryuji Otsuki, Yuto Sekine, Takuya Yamashita, Shion Yoneya, Shoji Iguchi, Masanori Yamamoto

    ACS Sustainable Chemistry & Engineering   2025.11

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    Authorship:Last author  

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  • Thiyl Chemistry: Cysteine-Catalyzed Maleate Isomerization via Aqueous Thiyl Radical Processes

    Satoru Kosaka, Kentaro Kurebayashi, Naoki Yamato, Hiroshi Tanaka, Naoki Haruta, Masanori Yamamoto

    Green Chemistry   2025.2

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    Authorship:Last author, Corresponding author   Publishing type:Research paper (scientific journal)   Publisher:Royal Society of Chemistry (RSC)  

    Enzymatic systems efficiently catalyze the E/Z isomerization of C=C double bonds by thiol-based cysteine residues, while artificial reactions utilizing thiol-based molecules have remained stoichiometric, not catalytic. Herein, we report a...

    File: Green Chemistry-Maleate-accpeted_version.pdf

    DOI: 10.1039/d4gc06310d

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  • Toward Three-dimensionally Ordered Nanoporous Graphene Materials: Template Synthesis, Structure, and Applications

    Masanori Yamamoto, Shunsuke Goto, Rui Tang, Kaoru Yamazaki

    Chemical Science   2024

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    Authorship:Corresponding author  

    File: 2023_Chemical_Science (D3SC05022J).pdf

    DOI: 10.1039/d3sc05022j

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  • Surface Defect Healing in Annealing from Nanoporous Carbons to Nanoporous Graphenes

    Kaoru Yamazaki, Shunsuke Goto, Shunya Yoshino, Anna Gubarevich, Katsumi Yoshida, Hideki Kato, Masanori Yamamoto

    Physical Chemistry Chemical Physics   2023.11

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    Authorship:Last author, Corresponding author  

    File: 2023_PCCP (D3CP04921C).pdf

    DOI: 10.1039/d3cp04921c

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  • Non-aqueous Bonding of Leuprorelin to Ochratoxin A for Peptide-based Solid-phase Extraction

    Naoki Yamato, Noriaki Kumagai, Momoha Okahira, Satoru Kosaka, Shuji Kodama, Ryohei Yamamoto, Atsushi Yamamoto, Koichiro Takao, Masanori Yamamoto

    Chemical Communications   58   12106 - 12109   2022.9

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    Authorship:Last author, Corresponding author  

    File: 2022_Chemical_Communications.pdf

    DOI: 10.1039/d2cc04430g

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  • Nano-Confinement of Insulating Sulfur in the Cathode Composite of All-Solid-State Li–S Batteries Using Flexible Carbon Materials with Large Pore Volumes

    Masanori Yamamoto, Shunsuke Goto, Rui Tang, Keita Nomura, Yuichiro Hayasaka, Youichi Yoshioka, Masashi Ito, Masahiro Morooka, Hirotomo Nishihara, Takashi Kyotani

    ACS Applied Materials & Interfaces   13 ( 32 )   38613 - 38622   2021.8

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    Authorship:Corresponding author   Publishing type:Research paper (scientific journal)   Publisher:American Chemical Society (ACS)  

    DOI: 10.1021/acsami.1c10275

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  • Highly Diastereoselective Construction of Acyclic Systems with Two Adjacent Quaternary Stereocenters by Allylation of Ketones

    Takeshi Takeda, Masanori Yamamoto, Satoshi Yoshida, Akira Tsubouchi

    Angewandte Chemie International Edition   51 ( 29 )   7263 - 7266   2012.7

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    Publishing type:Research paper (scientific journal)   Publisher:Wiley  

    File: 2012 Angewandte Chemie International Edition.pdf

    DOI: 10.1002/anie.201202808

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  • Solid-State Schikorr Reaction from Ferrous Chloride to Magnetite with Hydrogen Evolution as the Kinetic Bottleneck

    Masanori Yamamoto, Yota Takamura, Yoshiaki Kokubo, Makoto Urushihara, Nobutake Horiuchi, Wenbin Dai, Yuichiro Hayasaka, Eiji Kita, Koichiro Takao

    Inorganic Chemistry   62   14580 - 14589   2023.8

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    Authorship:Corresponding author  

    DOI: 10.1021/acs.inorgchem.3c01676

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  • The carbon chain growth during onset CVD graphene formation on γ-Al2O3 is promoted by unsaturated CH2 ends

    Qi Zhao, Masanori Yamamoto, Kaoru Yamazaki, Hirotomo Nishihara, Rachel Crespo-Otero, Devis Di Tommaso

    Physical Chemistry Chemical Physics   2022.9

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    Publishing type:Research paper (scientific journal)   Publisher:Royal Society of Chemistry (RSC)  

    Chemical vapor deposition of methane onto a template of alumina (Al2O3) nanoparticles is a prominent synthetic strategy of graphene meso-sponge, a new class of nano porous carbon materials consisting of...

    DOI: 10.1039/d2cp01554d

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  • Correlation of Theophylline Levels in Rat Exhaled Breath and Lung Tissue after its Intravenous Injection

    Miyoko Matsushima, Souma Tanihata, Junpei Kusakabe, Momoha Okahira, Hiroshi Ito, Atsushi Yamamoto, Masanori Yamamoto, Ryohei Yamamoto, Tsutomu Kawabe

    Journal of Breath Research   2022.5

  • Porous Nanographene Formation on γ-Alumina Nanoparticles via Transition-Metal-Free Methane Activation

    Masanori Yamamoto, Qi Zhao, Shunsuke Goto, Yu Gu, Takaaki Toriyama, Tomokazu Yamamoto, Alex Aziz, Rachel Crespo-Otero, Devis Di Tommaso, Masazumi Tamura, Keiichi Tomishige, Takashi Kyotani, Kaoru Yamazaki

    Chemical Science   13 ( 11 )   3140 - 3146   2022.2

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    Authorship:Corresponding author   Language:English   Publishing type:Research paper (scientific journal)   Publisher:Royal Society of Chemistry (RSC)  

    γ-Al2O3 nanoparticles promote pyrolytic carbon deposition of CH4 at temperatures higher than 800°C to give single-walled nanoporous graphene (NPG) materials without the need for transition metals as reaction centers. To accelerate the development of efficient reactions for NPG synthesis, we have investigated early-stage CH4 activation for NPG formation on γ-Al2O3 nanoparticles via reaction kinetics and surface analysis. The formation of NPG was promoted at oxygen vacancies on (100) surfaces of γ-Al2O3 nanoparticles following surface activation by CH4. The kinetic analysis was well corroborated by a computational study using density functional theory. Surface defects generated as a result of surface activation by CH4 make it kinetically feasible to obtain single-layered NPG, demonstrating the importance of precise control of oxygen vacancies for carbon growth.

    File: 2022_Chemical_Science.pdf

    DOI: 10.1039/d1sc06578e

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  • Cationic DABCO-Based Catalyst for Site-Selective C–H Alkylation via Photoinduced Hydrogen-Atom Transfer

    Akira Matsumoto, Masanori Yamamoto, Keiji Maruoka

    ACS Catalysis   2045 - 2051   2022.1

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    Language:English   Publishing type:Research paper (scientific journal)   Publisher:American Chemical Society ({ACS})  

    DOI: 10.1021/acscatal.1c05484

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  • Iron porphyrin-derived ordered carbonaceous frameworks

    Masanori Yamamoto, Kazuma Takahashi, Mao Ohwada, Yuxin Wu, Kazuyuki Iwase, Yuichiro Hayasaka, Hisashi Konaka, Henry Cove, Devis Di Tommaso, Kazuhide Kamiya, et al.

    Catalysis Today   364   164 - 171   2021.3

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    Authorship:Corresponding author   Publishing type:Research paper (scientific journal)   Publisher:Elsevier BV  

    DOI: 10.1016/j.cattod.2020.07.003

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  • Force-responsive ordered carbonaceous frameworks synthesized from Ni-porphyrin

    Koki Chida, Takeharu Yoshii, Kazuma Takahashi, Masanori Yamamoto, Kazuya Kanamaru, Mao Ohwada, Varisara Deerattrakul, Jun Maruyama, Kazuhide Kamiya, Yuichiro Hayasaka, Masataka Inoue, Fumito Tani, Hirotomo Nishihara

    Chemical Communications   57 ( 49 )   6007 - 6010   2021

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    Language:English   Publishing type:Research paper (scientific journal)   Publisher:Royal Society of Chemistry ({RSC})  

    <p>We have succeeded in the synthesis of a new type of ordered carbonaceous framework (OCF) with developed microporosity and a non-stacked graphene-based framework, which led to exhibition of unique flexibility.</p>

    DOI: 10.1039/d1cc01618k

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  • Synthesis of graphene mesosponge via catalytic methane decomposition on magnesium oxide

    Shogo Sunahiro, Keita Nomura, Shunsuke Goto, Kazuya Kanamaru, Rui Tang, Masanori Yamamoto, Takeharu Yoshii, Junko N. Kondo, Qi Zhao, Azeem Ghulam Nabi, Rachel Crespo-Otero, Devis Di Tommaso, Takashi Kyotani, Hirotomo Nishihara

    Journal of Materials Chemistry A   9 ( 25 )   14296 - 14308   2021

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    Publishing type:Research paper (scientific journal)   Publisher:Royal Society of Chemistry (RSC)  

    <p>MgO has specific catalysis for CH4-to-C conversion, and functions as a cost-effective and environmentally friendly template to produce graphene mesosponge with developed porosity, excellent stability, and super soft and elastic properties.</p>

    DOI: 10.1039/d1ta02326h

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  • Pyrene‐Thiol‐modified Pd Nanoparticles on Carbon Support: Kinetic Control by Steric Hinderance and Improved Stability by the Catalyst‐Support Interaction

    Takeharu Yoshii, Daiki Umemoto, Masanori Yamamoto, Yasutaka Kuwahara, Hirotomo Nishihara, Kohsuke Mori, Takashi Kyotani, Hiromi Yamashita

    ChemCatChem   12 ( 23 )   5880 - 5887   2020.12

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    Language:English   Publishing type:Research paper (scientific journal)   Publisher:Wiley  

    DOI: 10.1002/cctc.202000987

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  • Synthesis of Ordered Carbonaceous Framework with Microporosity from Porphyrin with Ethynyl Groups

    Hirotomo Nishihara, Kenta Matsuura, Mao Ohwada, Masanori Yamamoto, Yoshiaki Matsuo, Jun Maruyama, Yuichiro Hayasaka, Shingi Yamaguchi, Kazuhide Kamiya, Hisashi Konaka, Masataka Inoue, Fumito Tani

    Chemistry Letters   49 ( 6 )   619 - 623   2020.6

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    Publishing type:Research paper (scientific journal)   Publisher:The Chemical Society of Japan  

    DOI: 10.1246/cl.200141

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  • Effect of carbon surface on degradation of supercapacitors in a negative potential range

    Rui Tang, Masanori Yamamoto, Keita Nomura, Emilia Morallón, Diego Cazorla-Amorós, Hirotomo Nishihara, Takashi Kyotani

    Journal of Power Sources   457   228042 - 228042   2020.5

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    Publishing type:Research paper (scientific journal)   Publisher:Elsevier BV  

    DOI: 10.1016/j.jpowsour.2020.228042

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  • Carbon-rich materials with three-dimensional ordering at the angstrom level

    Shixin Fa, Masanori Yamamoto, Hirotomo Nishihara, Ryota Sakamoto, Kazuhide Kamiya, Yuta Nishina, Tomoki Ogoshi

    Chemical Science   11 ( 23 )   5866 - 5873   2020

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    Publishing type:Research paper (scientific journal)   Publisher:Royal Society of Chemistry (RSC)  

    <p>We discuss the preparation and application of various carbon-rich materials with three-dimensional ordering at the angstrom level.</p>

    DOI: 10.1039/d0sc02422h

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  • Force-driven reversible liquid–gas phase transition mediated by elastic nanosponges

    Keita Nomura, Hirotomo Nishihara, Masanori Yamamoto, Atsushi Gabe, Masashi Ito, Masanobu Uchimura, Yuta Nishina, Hideki Tanaka, Minoru T. Miyahara, Takashi Kyotani

    Nature Communications   10 ( 1 )   2019.12

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    Publishing type:Research paper (scientific journal)   Publisher:Springer Science and Business Media {LLC}  

    DOI: 10.1038/s41467-019-10511-7

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  • Probing the Entropic Effect in Molecular Noncovalent Interactions between Resin-Bound Polybrominated Arenes and Small Substrates

    Masanori Yamamoto, Miyuki Obara, Keisuke Ochi, Atsushi Yamamoto, Katsuhiko Takenaka, Tsunehiro Tanaka, Kazunori Sato

    ChemPlusChem   83 ( 9 )   820 - 824   2018.6

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    Authorship:Corresponding author   Publishing type:Research paper (scientific journal)   Publisher:Wiley  

    DOI: 10.1002/cplu.201800304

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  • A Ruthenium Complex–Porphyrin–Fullerene‐Linked Molecular Pentad as an Integrative Photosynthetic Model

    Masanori Yamamoto, Jens Föhlinger, Jonas Petersson, Leif Hammarström, Hiroshi Imahori

    Angewandte Chemie   129 ( 12 )   3377 - 3381   2017.2

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    Publishing type:Research paper (scientific journal)   Publisher:Wiley  

    Abstract

    A ruthenium complex, porphyrin sensitizer, fullerene acceptor molecular pentad has been synthesized and a long‐lived hole–electron pair was achieved in aqueous solution by photoinduced multistep electron transfer: Upon irradiation by visible light, the excited‐state of a zinc porphyrin (1ZnP*) was quenched by fullerene (C60) to afford a radical ion pair, 1,3(ZnP.+‐C60.−). This was followed by the subsequent electron transfer from a water oxidation catalyst unit (RuII) to ZnP.+ to give the long‐lived charge‐separated state, RuIII‐ZnP‐C60.−, with a lifetime of 14 μs. The ZnP worked as a visible‐light‐harvesting antenna, while the C60 acted as an excellent electron acceptor. As a consequence, visible‐light‐driven water oxidation by this integrated photosynthetic model compound was achieved in the presence of sacrificial oxidant and redox mediator.

    DOI: 10.1002/ange.201612456

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  • Artificial Molecular Photosynthetic Systems: Towards Efficient Photoelectrochemical Water Oxidation

    Masanori Yamamoto, Koji Tanaka

    ChemPlusChem   81 ( 10 )   1028 - 1044   2016.10

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    Publishing type:Research paper (scientific journal)   Publisher:Wiley-Blackwell  

    DOI: 10.1002/cplu.201600236

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  • Probing the Dipolar Coupling in a Heterospin Endohedral Fullerene–Phthalocyanine Dyad

    Shen Zhou, Masanori Yamamoto, G. Andrew D. Briggs, Hiroshi Imahori, Kyriakos Porfyrakis

    Journal of the American Chemical Society   138 ( 4 )   1313 - 1319   2016.2

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    Publishing type:Research paper (scientific journal)   Publisher:American Chemical Society (ACS)  

    DOI: 10.1021/jacs.5b11641

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  • Remarkable Dependence of the Final Charge Separation Efficiency on the Donor-Acceptor Interaction in Photoinduced Electron Transfer

    Tomohiro Higashino, Tomoki Yamada, Masanori Yamamoto, Akihiro Furube, Nikolai V. Tkachenko, Taku Miura, Yasuhiro Kobori, Ryota Jono, Koichi Yamashita, Hiroshi Imahori

    Angewandte Chemie International Edition   55 ( 2 )   629 - 633   2016.1

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    Publishing type:Research paper (scientific journal)   Publisher:Wiley  

    DOI: 10.1002/anie.201509067

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  • Visible light-driven water oxidation using a covalently-linked molecular catalyst–sensitizer dyad assembled on a TiO2 electrode

    Masanori Yamamoto, Lei Wang, Fusheng Li, Takashi Fukushima, Koji Tanaka, Licheng Sun, Hiroshi Imahori

    Chemical Science   7 ( 2 )   1430 - 1439   2016

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    Publishing type:Research paper (scientific journal)   Publisher:Royal Society of Chemistry ({RSC})  

    DOI: 10.1039/C5SC03669K

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  • Visible light-driven water oxidation with a subporphyrin sensitizer and a water oxidation catalyst

    Masanori Yamamoto, Yusuke Nishizawa, Pavel Chábera, Fusheng Li, Torbjörn Pascher, Villy Sundström, Licheng Sun, Hiroshi Imahori

    Chemical Communications   52 ( 94 )   13702 - 13705   2016

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    Publishing type:Research paper (scientific journal)   Publisher:Royal Society of Chemistry ({RSC})  

    DOI: 10.1039/C6CC07877J

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  • Remarkable Dependence of the Final Charge Separation Efficiency on the Donor–Acceptor Interaction in Photoinduced Electron Transfer

    Tomohiro Higashino, Tomoki Yamada, Masanori Yamamoto, Akihiro Furube, Nikolai V. Tkachenko, Taku Miura, Yasuhiro Kobori, Ryota Jono, Koichi Yamashita, Hiroshi Imahori

    Angewandte Chemie   128 ( 2 )   639 - 643   2015.11

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    Publishing type:Research paper (scientific journal)   Publisher:Wiley  

    Abstract

    The unprecedented dependence of final charge separation efficiency as a function of donor–acceptor interaction in covalently‐linked molecules with a rectilinear rigid oligo‐p‐xylene bridge has been observed. Optimization of the donor–acceptor electronic coupling remarkably inhibits the undesirable rapid decay of the singlet charge‐separated state to the ground state, yielding the final long‐lived, triplet charge‐separated state with circa 100 % efficiency. This finding is extremely useful for the rational design of artificial photosynthesis and organic photovoltaic cells toward efficient solar energy conversion.

    DOI: 10.1002/ange.201509067

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  • Slow Charge Recombination and Enhanced Photoelectrochemical Properties of Diazaporphyrin-Fullerene Linked Dyad

    Masanori Yamamoto, Yuta Takano, Yoshihiro Matano, Kati Stranius, Nikolai V. Tkachenko, Helge Lemmetyinen, Hiroshi Imahori

    The Journal of Physical Chemistry C   118 ( 4 )   1808 - 1820   2014.1

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    Publishing type:Research paper (scientific journal)   Publisher:American Chemical Society (ACS)  

    DOI: 10.1021/jp410436f

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  • Highly Diastereoselective Construction of Acyclic Systems with Two Adjacent Quaternary Stereocenters by Allylation of Ketones

    Takeshi Takeda, Masanori Yamamoto, Satoshi Yoshida, Akira Tsubouchi

    Angewandte Chemie   124 ( 29 )   7375 - 7378   2012.6

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    Publishing type:Research paper (scientific journal)   Publisher:Wiley  

    DOI: 10.1002/ange.201202808

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MISC

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Presentations

  • Chemistry of carbon materials: Fundamentals and applications Invited

    Masanori Yamamoto

    School of Biological and Chemical Sciences, Queen Mary, University of London  2020.2 

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  • Methane activation on surfaces of non-transition metal oxides for the synthesis of nanographene materials

    Masanori Yamamoto, Qi Zhao, Devis Di Tommaso, Kaoru Yamazaki

    The 17th Annual Meeting of Japan Society for Molecular Science 2023  2023.9 

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  • 「計算化学と実験化学の融合による三次元炭素材料の分子論的理解と包括的研究完成」

    山本 雅納, 山崎 馨

    東北大学アンサンブルプロジェクトリコレクションシンポジウム  2019.12 

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  • 酸化物ナノ粒子上におけるメタンから多孔性 グラフェンへのCVD成長の反応速度論

    山本 雅納, 陳 沛恩, 齊藤 穂, 小島 湧平, 張 同言, 山崎 馨, 山中 一郎

    第19回分子科学討論会  2025.9 

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Industrial property rights

  • 硫黄活物質含有電極組成物、並びにこれを用いた電極および電池(特許第7383254号)(多孔性グラフェンを正極導電助剤に適用した全固体電池に関する特許)

    吉岡 洋一, 伊藤 仁, 光山 知宏, 諸岡 正浩, 京谷 隆, 西原 洋知, 山本 雅納, 野村 啓太

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    Application no:特願2019-031805  Date applied:2019

    Announcement no:特開2020-140950  Date announced:2020.9

    Patent/Registration no:特許7383254  Date registered:2023.11 

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  • 熱交換装置(特許第7242011号)

    伊藤 仁, 内村 允宣, 京谷 隆, 西原 洋知, 山本 雅納, 野村 啓太

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    Application no:特願2019-021855  Date applied:2019

    Patent/Registration no:特許7242011  Date registered:2023.3 

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  • 炭素および水素の製造方法

    戴 文斌, 堀内 伸剛, 鷹尾 康一朗, 山本 雅納

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    Application no:特願2022-189401  Date applied:2022.11

    Announcement no:特開2024-077350  Date announced:2024.6

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  • ナノ多孔質成形体およびこれを用いた熱交換装置

    伊藤 仁, 市川 靖, 金子 貴子, 内村 允宣, 西原 洋知, 京谷 隆, 山本 雅納, 我部 篤, 山田 浩, 石橋 健太

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    Application no:特願2022-53265  Date applied:2022.3

    Announcement no:特開2023-146196  Date announced:2023.10

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  • ナノ多孔質成形体

    金子 貴子, 伊藤 仁, 市川 靖, 内村 允宣, 京谷 隆, 西原 洋知, 我部 篤, 山本 雅納

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    Application no:特願2020-103286  Date applied:2020.6

    Announcement no:特開2021-194604  Date announced:2021.12

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  • 触媒材料、含酸素炭化水素製造装置及び含酸素炭化水素製造方法

    山本 雅納, 佐藤 一則

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    Application no:特願2017-198623  Date applied:2017.10

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Research Projects

  • メタン有効利用のための多孔性グラフェン材料合成制御

    2025 - 2026

    一般財団法人材料科学技術振興財団 令和6年度研究助成 

    研究代表者: 山本 雅納

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  • 多孔性グラフェン材料合成制御と分子論的理解の深化

    2025 - 2026

    公益財団法人 戸部眞紀財団 2025年度(令和7年度)研究助成 

    研究代表者: 山本 雅納

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  • 多孔性グラフェン材料担体による気相触媒反応の開発

    2025 - 2026

    国立研究開発法人 産業技術総合研究所 

    研究代表者: 山本 雅納

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    新たに開発した多孔性グラフェン材料を触媒担体に用いた高効率気相触媒反応の開発を目指す

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  • メタン活性化による多孔性グラフェン材料合成の高度制御

    Grant number:24K17558  2024 - 2027

    独立行政法人日本学術振興会  科学研究費助成事業 

    研究代表者: 山本 雅納

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    Al2O3ナノ粒子上でのメタンCVDによる多孔質グラフェン合成が東北大学 多元物質科学研究所・京谷研究室より報告されており、京谷隆教授の御指導の下、申請者も多孔性グラフェンに係るケミストリーの発展に微力ながら寄与してきた (Chem. Sci. 2024, 15, 1953)。本研究では、これまでの研究成果を踏まえて、アルミナなどの金属酸化物ナノ粒子上でのメタン熱分解による多孔性グラフェン合成の分子論的理解を更に深化させるとともに、反応制御因子の解明によるメタン分解反応の高度制御を目指す。分子論的理解に基づいた無機合成化学の精密制御により、従前には到達しえなかった高品質三次元多孔質グラフェン材料化学の創成を期する。

    キーワード: メタン活性化 多孔性グラフェン 表面欠陥 無機合成化学
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  • 多孔性グラフェン材料化学

    2024 - 2025

    公益財団法人 JFE21 世紀財団 2024 年度 技術研究助成 

    研究代表者: 山本 雅納

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  • Study on Molecule-based Catalysis using Thiyl radicals

    Grant number:23-IMS-C251  2023 - 2024

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  • Study for ordered 3D graphene materials

    The Ebara Hatakeyama Memorial Foundation  Research Grant 

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    Authorship:Principal investigator 

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  • Kinetic analysis of methane activation for the synthesis of nanoporous graphene materials

    Grant number:24-IMS-C333  2024.6 - 2026.3

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    Authorship:Principal investigator 

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  • Precise Control of Porous Graphene Synthesis via Methane Activation

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  • 計算化学と実験化学の融合による三次元炭素材料の分子論的理解と包括的研究完成

    東北大学附置研究所・センター連携体  若手研究者アンサンブルグラント (Ensemble Grant) 

    研究代表者: 山本 雅納

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    表題の提案研究について、酸化物ナノ粒子表面上でのメタン化学気相成長反応について「計算化学と実験化学の融合による分子論的反応理解」を達成しており、現在までに以下の業績を報告している。固相-気相間の不均一界面反応に関して現在までに得られた分子論的知見を根幹として、更なる合成反応開拓・有用物質変換反応探索が期待される。

    代表研究成果
    1. Toward Three-dimensionally Ordered Nanoporous Graphene Materials: Template Synthesis, Structure, and Applications
    Masanori Yamamoto*, Shunsuke Goto, Rui Tang, and Kaoru Yamazaki*
    Chem. Sci. 2024, 15, 1953‒1965
    DOI: 10.1039/d3sc05022j
    2. Surface Defect Healing in Annealing from Nanoporous Carbons to Nanoporous Graphenes
    Kaoru Yamazaki*, Shunsuke Goto, Shunya Yoshino, Anna Gubarevich, Katsumi Yoshida, Hideki Kato, and Masanori Yamamoto*
    Phys. Chem. Chem. Phys. 2023, 25, 32972‒32978
    DOI: 10.1039/d3cp04921c
    3. Porous Nanographene Formation on γ-Alumina Nanoparticles via Transition-Metal-Free Methane Activation
    Masanori Yamamoto*, Qi Zhao, Shunsuke Goto, Yu Gu, Takaaki Toriyama, Tomokazu Yamamoto, Hirotomo Nishihara, Alex Aziz, Rachel Crespo-Otero, Devis Di Tommaso*, Masazumi Tamura, Keiichi Tomishige, Takashi Kyotani, and Kaoru Yamazaki*
    Chem. Sci. 2022, 13, 3140‒3146
    DOI: 10.1039/d1sc06578e
    (Selected as HOT Article)

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Teaching Experience

Social Activities

  • Reviewer of Journal of Materials Chemistry A

    Role(s): Organizing member

    The Royal Society of Chemistry (RSC)  2026

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  • Reviewer of Angewandte Chemie

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    The German Chemical Society (Gesellschaft Deutscher Chemiker, GDCh)  2023

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  • Reviewer of National Science Centre, Poland, for grant review

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    National Science Centre, Poland 

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  • 触媒研究に携わっておられる先生方の忘年会 2025年度幹事

    Role(s): Chief editor, Planner, Organizing member

    幹事: 山本雅納 

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  • Reviewer of Chemical Communications

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    The Royal Society of Chemistry (RSC)  2025

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  • Reviewer of Advanced Functional Materials The Royal Society of Chemistry (RSC)

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    The Royal Society of Chemistry (RSC)  2024

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  • Reviewer of Advanced Functional Materials

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    Wiley-VCH (Weinheim, DE)  2024

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  • Reviewer of ACS Applied Nano Materials

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    The American Chemical Society (ACS)  2024

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  • Reviewer of RSC Advances

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    The Royal Society of Chemistry (RSC)  2023 - 2025

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  • RSC Advances Reviewer Panel Member

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    The Royal Society of Chemistry (RSC)  2023 - 2024

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