2026/08/17 更新

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写真a

ホンダ サトシ
本多 智
HONDA SATOSHI
所属
先導物質化学研究所 准教授
職名
准教授

論文

  • A Millimeter-Thick Photoresponsive Polymer Enabling In-Plane Compression Modulation for Tactile Displays 査読 国際誌

    Ohisa, S; Motomura, G; Fujisaki, Y; Ishii, N; Kinoshita, N; Hagiwara, K; Honda, S

    ACS APPLIED POLYMER MATERIALS   8 ( 9 )   6336 - 6345   2026年5月   ISSN:2637-6105

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    担当区分:最終著者, 責任著者   記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:ACS Applied Polymer Materials  

    In this study, a millimeter-thick photoresponsive polymer capable of dynamic viscoelastic modulation under blue light irradiation is reported. This star-shaped polymer has a polydimethylsiloxane (PDMS) backbone networked via photoresponsive hexaarylbiimidazole (HABI) and is referred to as PDMS–HABI. By controlling the molecular weight of the PDMS precursor, the density of HABI was tuned, thereby enabling light penetration and photoresponse in samples with thicknesses up to 2 mm. Compression tests revealed that transmittance played a more crucial role than the local elastic modulus in determining the extent of compression force reduction upon light irradiation. The optimized sample exhibited a compression force reduction to 1/28 under 430 nm light irradiation. To explore practical applications, we fabricated a tactile display capable of presenting hard and soft sensations. However, as PDMS–HABI lacked shape recovery when exposed to light, it was integrated into an elastic container to endow it with resilience. The compression properties of the container filled with PDMS–HABI were evaluated under light irradiation, and photoinduced softening reduced the compression force by nearly 50%. These results indicated the feasibility of using PDMS–HABI in tactile displays capable of presenting in-plane distributions of hardness and softness with potential applications in augmented reality/virtual reality haptic interfaces.

    DOI: 10.1021/acsapm.5c04825

    Web of Science

    Scopus

  • Hydration and Entanglement Contrasts Between Dry and Wet States in Blood-Compatible Poly(2-methoxyethyl acrylate) 招待 査読 国際誌

    Zhang, Y; Tanaka, Y; Honda, S; Tanaka, M

    JOURNAL OF INORGANIC AND ORGANOMETALLIC POLYMERS AND MATERIALS   2026年7月   ISSN:1574-1443 eISSN:1574-1451

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    担当区分:責任著者   記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:Journal of Inorganic and Organometallic Polymers and Materials  

    Blood-compatible polymers are widely used in biomedical applications, yet the relationships between the effect of their fundamental properties under hydrated conditions on biological properties remain poorly understood. Here, we synthesized a series of poly(2-methoxyethyl acrylate)s (PMEAs) with controlled molecular weights and dispersities. The critical entanglement molecular weight (M<inf>c</inf>) of PMEA in the dry condition revealed by rheological analysis was approximately 24 kDa, which is comparable to that of poly(methyl methacrylate). In contrast, PMEA exposed to water, i.e., under water-saturated conditions showed a M<inf>c</inf> of 36 kDa. Similar to the established understanding, DSC analysis validated the presence of three types of hydration water, i.e., non-freezing, intermediate, and free waters. However, among these, the amount of non-freezing and free waters increased markedly along with the increase in molecular weight above M<inf>c</inf>. Importantly, ELISA tests revealed the significant suppression of fibronectin denaturation by employing PMEAs with molecular weights exceeding the M<inf>c</inf>. Our findings reveal how precision polymer design especially for molecular weight or polymer chain entanglement affects hydration and biological performance, thus providing molecular insight into the design of next-generation blood-compatible materials.

    DOI: 10.1007/s10904-026-04464-w

    Web of Science

    Scopus

  • Light-driven rheological modulation of solventless polymer networks enabled by precisely architected flexible star polysiloxanes 査読 国際誌

    Honda, S; Zhang, Y; Tanaka, M

    CHEMICAL COMMUNICATIONS   61 ( 96 )   19112 - 19115   2025年11月   ISSN:1359-7345 eISSN:1364-548X

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    担当区分:筆頭著者, 責任著者   記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:Chemical Communications  

    We report the synthesis and photoresponsivity of precisely designed liquid star-shaped poly(dimethyl siloxane) (PDMS) with anthracene end groups. Owing to the efficient end-linking of the flexible PDMS arms upon the first UV irradiation (λ = 365 nm, UV<inf>365</inf>), the storage modulus (G′) increased from 4.7 Pa to 119 kPa (>25 000-fold), and the physical state became a rubbery solid. Subsequent irradiation with UV light at a shorter wavelength (λ = 254 nm, UV<inf>254</inf>) decreased G′ toward the photostationary state, and viscoelasticity modulation was achieved between the two photostationary states under solvent-free conditions.

    DOI: 10.1039/d5cc04840k

    Web of Science

    Scopus

    PubMed

  • 音を駆動力とする結合交換反応

    本多 智

    高分子   74 ( 5 )   231 - 232   2025年   ISSN:04541138 eISSN:21859825

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    記述言語:日本語   出版者・発行元:公益社団法人 高分子学会  

    <p>1.はじめに</p>
    <p>架橋高分子は、工業用途から医療用途に至るまで、人類社会に欠かせない材料である。多くの架橋高分子には、高い強度と耐久性すなわち高信頼性が求められてきた。しかし、架橋高分子の代表的用途と言える接</p>

    DOI: 10.1295/kobunshi.74.5_231

    CiNii Research

共同研究・競争的資金等の研究課題

  • クロスリアリティ時代に向けた光・音響動的循環型物質工学の開拓

    2024年10月 - 2028年3月

    科学技術振興機構  さきがけ 

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    担当区分:研究代表者 

  • 音動的物質工学に基づく資源循環技術の創製

    2024年10月 - 2026年3月

    科学技術振興機構  ALCA-Next 

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    担当区分:研究代表者  資金種別:受託研究

  • 高分子形状編集化学に基づく革新的新素材の創出

    2023年4月 - 2027年3月

    日本学術振興会  挑戦的研究(開拓) 

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    担当区分:研究代表者  資金種別:科研費

  • 資源循環型シリコーンオリンピックゴムの開発

    公益財団法人 フジシール財団 

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    資金種別:科研費以外の競争的資金