2025/06/09 更新

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写真a

イワシタ トモヤ
岩下 智哉
IWASHITA TOMOYA
所属
理学研究院 化学部門 助教
理学部 化学科(併任)
理学府 化学専攻(併任)
職名
助教
連絡先
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学位

  • 博士(理学) ( 2025年3月 九州大学 )

論文

  • Decomposition of friction coefficients to analyze hydration effects on a C<sub>60</sub>(OH)<sub>n</sub> 査読 国際誌

    Iwashita, T; Uematsu, Y; Terazima, M; Akiyama, R

    JOURNAL OF CHEMICAL PHYSICS   161 ( 24 )   2024年12月   ISSN:0021-9606 eISSN:1089-7690

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    担当区分:筆頭著者   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 Chemical Physics  

    To analyze hydration effects on macromolecular diffusion, the friction coefficients of macromolecules were examined using molecular dynamics simulations with an all-atom model. In the present study, a method was introduced to decompose the molecular friction coefficient into the contributions for each site on the macromolecule. The method was applied to several fullerenols in ambient water. The friction coefficients for the hydrophilic part, such as the OH group, were larger than those for the hydrophobic part, such as the C. The hydration effect did not depend only on the kind of functional group but also on the surface roughness. This approach would be useful in explaining the experimentally observed large changes in diffusion coefficients of proteins that were accompanied by conformation changes.

    DOI: 10.1063/5.0241914

    Web of Science

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    PubMed

  • Usefulness of higher-order system-size correction for macromolecule diffusion coefficients: A molecular dynamics study 査読 国際誌

    Iwashita, T; Nagao, M; Yoshimori, A; Terazima, M; Akiyama, R

    CHEMICAL PHYSICS LETTERS   807   2022年11月   ISSN:0009-2614 eISSN:1873-4448

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    担当区分:筆頭著者   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 Physics Letters  

    Yeh and Hummer's simplified estimation method has often been adopted to obtain diffusion coefficients for solute molecules using molecular dynamic simulation. However, the simplified formula is not necessarily valid when a small basic cell is used. Therefore, we conducted molecular dynamics simulations of aqueous protein solution to estimate the diffusion coefficient for the infinite dilution limit. We confirmed a deviation from the simplified formula in the simulation data and rationalized the discrepancy based on the unsimplified formula.

    DOI: 10.1016/j.cplett.2022.140096

    Web of Science

    Scopus