Updated on 2025/04/23

写真a

 
MATSUMOTO HIKARU
 
Organization
Faculty of Engineering Department of Chemical Engineering Assistant Professor
School of Engineering (Concurrent)
Graduate School of Engineering (Concurrent)
Title
Assistant Professor
Contact information
メールアドレス
Homepage

Degree

  • Ph.D. in Engineering

Research History

  • Kyushu University Faculty of Engineering Assistant Professor 

    2023.4 - Present

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  • Asahi Kasei Corporation  Research & Development 

    2021.4 - 2023.3

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  • 2021年4月 旭化成株式会社   

    2021年4月 旭化成株式会社

  • 2018年4月 日本学術振興会特別研究員(DC1)   

Research Interests・Research Keywords

  • Research theme: 高分子化学

    Keyword: 高分子化学

    Research period: 2024

  • Research theme: 金属ナノ粒子

    Keyword: 金属ナノ粒子

    Research period: 2024

  • Research theme: 触媒化学

    Keyword: 触媒化学

    Research period: 2024

  • Research theme: 有機金属錯体

    Keyword: 有機金属錯体

    Research period: 2024

  • Research theme: 有機分子触媒

    Keyword: 有機分子触媒

    Research period: 2024

  • Research theme: 多孔質材料

    Keyword: 多孔質材料

    Research period: 2024

  • Research theme: 反応工学

    Keyword: 反応工学

    Research period: 2024

  • Research theme: 光触媒

    Keyword: 光触媒

    Research period: 2024

  • Research theme: フローケミストリー

    Keyword: フローケミストリー

    Research period: 2024

  • Research theme: ゲル

    Keyword: ゲル

    Research period: 2024

  • Research theme: メカノケミストリー

    Keyword: メカノケミストリー

    Research period: 2024

  • Research theme: Continuous-Flow Synthesis Using Polymer-Supported Photocatalyst

    Keyword: polymer gel, photocatalyst, flow synthesis

    Research period: 2023.4 - 2026.3

  • Research theme: Mechanochemical Synthesis Using Polymer-Supported Catalyst

    Keyword: mechanochemistry,polymer material,immobilized catalyst

    Research period: 2023.4 - 2026.3

  • Research theme: Development of Continuous-Flow Reaction Using Porous Gel Catalyst

    Keyword: porous polymer, monolith, organometallics, organocatalyst, flow synthesis

    Research period: 2016.4 - 2021.3

Awards

  • 化学工学会第86年会

    2021.3   公益社団法人 化学工学会  

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    最優秀学生賞

  • 日本バイオマテリアル学会 2020年度九州支部ブロック学術講演会

    2021.1   日本バイオマテリアル学会 九州ブロック  

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    優秀発表学生賞

  • 化学工学会九州支部第24回学生賞審査会

    2019.7   化学工学会九州支部  

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    学生賞

  • 第27回九州地区若手ケミカルエンジニア討論会

    2016.7   化学工学会九州支部、化学工学会九州支部若手の会、Q・NET(化学工学会九州支部若手エンジニア連絡会)  

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    ポスター賞

  • 第53回化学関連支部合同九州大会

    2016.7   化学工学会九州支部  

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    ポスター賞

Papers

  • Preparation of 4D hydrogels with PET-RAFT and orthogonal photo-reactions

    Chanhyuk Jee, Hikaru Matsumoto, Tasuku Horiuchi, Zaiyang Liu, Zhongkui Wang, Obayashi Kakeru, Ken Kojio, Masanori Nagao, Yoshiko Miura

    RSC Applied Polymers   3 ( 1 )   156 - 162   2025

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    Publishing type:Research paper (scientific journal)   Publisher:RSC Applied Polymers  

    We conducted an experiment to compare the predicted outcomes with the practical results of synthesizing four-dimensional (4D) hydrogels and observing their 4D motion. We employed a computer simulator and utilized PET-RAFT and orthogonal chemistry methods. To initiate the study on 4D materials, we employed the swelling method and controlled it by utilizing visible light synthesis. To regulate the irradiation time of blue light, we employed cinnamoyl ethyl acrylate as an orthogonal system to control crosslinking density. Various physical properties were assessed using a rheometer. Our findings confirmed that the movement could be controlled by adjusting the swelling ratio of the upper and lower parts, thereby implementing a bi-layer design based on differences in crosslinking density. This study highlights the successful synthesis of hydrogels with diverse physical properties and demonstrates the potential of 4D materials through the orthogonal synthesis technique.

    DOI: 10.1039/D4LP00232F

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  • Continuous-Flow Asymmetric Aldol Addition Using Immobilized Chiral Catalyst on Organogel-Based Porous Monolith

    Hikaru Matsumoto, Haruka Hattori, Masanori Nagao, Yu Hoshino, Yoshiko Miura

    Journal of Chemical Engineering of Japan   57 ( 1 )   2024.12   ISSN:0021-9592 eISSN:1881-1299

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    Publishing type:Research paper (scientific journal)   Publisher:Informa UK Limited  

    DOI: 10.1080/00219592.2024.2384402

    Web of Science

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    Repository Public URL: https://hdl.handle.net/2324/7236931

  • Residence time distribution effects on continuous-flow reaction in a polymer-gel-based porous monolith: Investigation of an asymmetric reaction with supported Hayashi–Jørgensen catalysts

    Harutaka Shigeeda, Hikaru Matsumoto, Masanori Nagao, Yoshiko Miura

    Reaction Chemistry & Engineering   2024.12   ISSN:2058-9883 eISSN:2058-9883

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

    Immobilized catalysts are easy to reuse and applicable to continuous-flow reactions, while their catalytic activity would decrease due to poor diffusivity of reactants. To mitigate the molecular diffusion resistance, it...

    DOI: 10.1039/d4re00597j

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  • Roles of Divinylbenzene Co‐Cross‐Linker in a Threefold Cross‐Linked Polystyrene‐Phosphine Hybrid Monolith: Impact of Cross‐Linking Degree on Catalytic Performance

    Hikaru Matsumoto, Yu Hoshino, Tomohiro Iwai, Masaya Sawamura, Yoshiko Miura

    European Journal of Organic Chemistry   28 ( 1 )   2024.9   ISSN:1434-193X eISSN:1099-0690

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

    Continuous‐flow organic transformations using immobilized catalysts are crucial for green and sustainable chemistry. Cross‐linked polymer ligands offer high stability, ease of recovery through filtration, and thus enhance performance in continuous‐flow reactions via transition‐metal catalysis. Additionally, the cross‐linking structure of the polymer support creates a unique reaction platform that controls the coordination behavior of the supported ligands and stabilizes the metal catalysts. However, insights into the material‐based design for preparing highly active and durable immobilized metal catalysts are still limited. In this report, we propose a straightforward approach to boost both selective mono‐coordination and effective stabilization of metal complexes. We developed threefold cross‐linked polystyrene‐triphenylphosphine hybrid monoliths with cross‐linking structures adjusted by varying the content of divinylbenzene as co‐cross‐linker. The coordination behaviors and metal‐support interactions of these monoliths were evaluated, highlighting the importance of co‐cross‐linker content in site‐isolating phosphine units and stabilizing metal centers via arene‐metal interactions on the polystyrene network. By optimizing the cross‐linking structure, the monolith catalysts demonstrated exceptionally high catalytic activity and durability in Pd‐catalyzed C‐Cl transformations, such as Suzuki‐Miyaura cross‐couplings and Buchwald‐Hartwig aminations in continuous flow. This underscores the utility of our monolith system in challenging transition‐metal catalysis.

    DOI: 10.1002/ejoc.202400974

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    Repository Public URL: https://hdl.handle.net/2324/7236932

  • Effects of the cross-linked structures of polymer gels containing iron porphyrins on photoreduction of carbon dioxide

    Furusawa Shota, Nagao Masanori, Matsumoto Hikaru, Miura Yoshiko

    RSC Applied Polymers   2 ( 6 )   1026 - 1031   2024.9   eISSN:2755371X

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    Language:English   Publisher:Royal Society of Chemistry (RSC)  

    We prepared polystyrene-based polymer gels containing iron porphyrin and evaluated the effects of the cross-linked structures on the photoreduction of carbon dioxide to carbon monoxide. The amount of generated carbon monoxide was influenced by the diffusion of the substrates into the gel structures.

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Presentations

  • 人工加水分解酵素の最適化を目指したライブラリー作製

    #太田雅之,@松本光, @長尾匡憲, @三浦佳子

    化学工学会第90年会  2025.3 

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    Event date: 2025.3

    Language:Japanese   Presentation type:Poster presentation  

    Venue:東京理科大学  

  • リサイクル可能な触媒のためのメカノケミストリーを用いた金属凝集の再分散

    #西原雄太,@松本光, @長尾匡憲, @三浦佳子

    化学工学会第90年会  2025.3 

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    Event date: 2025.3

    Language:Japanese   Presentation type:Poster presentation  

    Venue:東京理科大学  

  • 多孔性ゲルに固定化した固定化触媒を用いた連続流通

    @三浦佳子#重枝春孝,@松本光, @長尾匡憲

    化学工学会第90年会  2025.3 

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    Event date: 2025.3

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:東京理科大学  

  • 温度応答性ゲルによる4D材料の開発

    @三浦佳子,@Jee Chanhyuk,Wang Zhongkui,小椎尾謙,@重山美奈@松本光, @長尾匡憲,

    化学工学会第90年会  2025.3 

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    Event date: 2025.3

    Language:Japanese   Presentation type:Poster presentation  

    Venue:東京理科大学  

  • Pd固定化触媒を用いたフロー反応における機械学習駆動型の最適化

    #周新程,@松本光, @長尾匡憲, @三浦佳子

    化学工学会第90年会  2025.3 

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    Event date: 2025.3

    Language:Japanese   Presentation type:Poster presentation  

    Venue:東京理科大学  

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MISC

  • Continuous-Flow Catalysis Using Phosphine-Metal Complexes on Porous Polymers: Designing Ligands, Pores, and Reactors Reviewed

    @Hikaru Matsumoto, @Tomohiro Iwai, @Masaya Sawamura, @Yoshiko Miura

    ChemPlusChem   2024.3

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    Language:Japanese   Publishing type:Article, review, commentary, editorial, etc. (scientific journal)  

    DOI: 10.1002/cplu.202400039

    Repository Public URL: https://hdl.handle.net/2324/7178743

Industrial property rights

Patent   Number of applications: 1   Number of registrations: 1
Utility model   Number of applications: 0   Number of registrations: 0
Design   Number of applications: 0   Number of registrations: 0
Trademark   Number of applications: 0   Number of registrations: 0

Professional Memberships

  • 化学工学会

  • プロセス化学会

  • 化学工学会

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  • プロセス化学会

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Research Projects

  • Development of Mechaochemical Organic Reactions with Flexible and Recyclable Polymer-Supported Catalysts

    Grant number:24K17560  2024.4 - 2026.3

    Grants-in-Aid for Scientific Research  Grant-in-Aid for Early-Career Scientists

    松本 光

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    Grant type:Scientific research funding

    近年の環境および資源問題から、粉砕などの機械エネルギーを用いたメカノケミカル合成が注目されている。従来の方法に比べ、メカノケミカル合成は溶媒を大幅に削減した合成法である。一方で、メカノケミカル合成において高活性かつ再利用可能な触媒の開発は未達成であった。本研究では、やわらかさを精緻に設計した高分子固定化触媒による、触媒活性、回収性、再利用性の高い触媒を開発する。温度およびせん断条件に応じて粘弾性を変える高分子を用いて、無溶媒下で機能する固定化触媒を設計する。高分子物性を最適化することで、溶媒レスな条件で優れた高分子固定化触媒を開発する。

    CiNii Research

  • 2023年度研究開発・調査助成/やわらかなゲルにくるまれた光触媒/金属触媒が協同する可視光駆動型有機合成の創成

    2024

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    Grant type:Donation

  • Development of glycopolymer nanomedicine with molecular recognition ability based on the precise polymerization

    Grant number:23K26708  2023.4 - 2027.3

    Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (B)

    三浦 佳子, 長尾 匡憲, 松本 光, 伊勢 裕彦, 檜垣 勇次

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    Grant type:Scientific research funding

    リビングラジカル重合などの精密高分子合成手法を用い、高分子の分子構造を制御して、ターゲットタンパク質を精密に認識する合成高分子、及び分子認識反応場の創製を行う。分子認識性高分子としては、糖鎖を側鎖に有する高分子である糖鎖高分子を用いる。ターゲットタンパク質に合わせて高分子の精密設計を行い、強く特異的な分子認識を行う高分子の創製、分子認識の物理化学的な作業機序の解析、機械学習を用いた分子認識性高分子の設計を行う。基礎的な分子認識性高分子の学理を構築すると同時に、幾つかの疾病に作用してこれを防除する高分子の開発を行う。

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  • 精密重合を駆使した分子認識性糖鎖高分子の確立と高分子医薬の創製

    Grant number:23H02015  2023 - 2026

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (B)

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    Authorship:Coinvestigator(s)  Grant type:Scientific research funding

  • 2023年度 環境研究助成/高分子固定化触媒のやわらかさが生む無溶剤下での有機合成プロセスの開発

    2023

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    Grant type:Donation

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Educational Activities

  • ・工学部 化学工学部門 第9講座における学生指導
    ・学部生に対する実験指導

Class subject

  • 化学工学実験第三

    2024.10 - 2025.3   Second semester

  • 化学工学実験第一

    2024.10 - 2025.3   Second semester

  • 化学工学実験第二

    2024.4 - 2024.9   First semester

  • 化学工学実験第一

    2023.10 - 2024.3   Second semester

  • 化学工学実験第三

    2023.10 - 2024.3   Second semester

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FD Participation

  • 2023.4   Role:Participation   Title:令和5年度 第1回全学FD(新任教員の研修)The 1st All-University FD (training for new faculty members) in FY2023.

    Organizer:University-wide