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村松 康司

ムラマツ ヤスジ  (Yasuji Muramatsu)

基本情報

所属
兵庫県立大学 大学院工学研究科・高度産業科学技術研究所 特任教授 (名誉教授)
学位
博士(理学)(1992年11月 東北大学)

通称等の別名
村松康司
研究者番号
50343918
ORCID ID
 https://orcid.org/0000-0001-6284-9825
J-GLOBAL ID
202001004572200320
researchmap会員ID
R000007146

外部リンク

論文

 215
  • Yu Fujikata, Yasuji Muramatsu, Teruyasu Mizoguchi
    The Journal of Chemical Physics 164(21) 214112-1-214112-12 2026年6月4日  査読有り
    X-ray absorption near-edge structure (XANES) provides element-specific insights into local electronic and structural environments, but quantitative interpretation of molecular XANES under periodic boundary conditions (PBC) remains challenging due to finite-size effects and core-hole treatments. In this work, we systematically investigate how core-hole approximations and charge compensation schemes affect transition energies, energy alignment, and chemical-shift reproducibility in PBC-density functional theory-based molecular XANES calculations. Using ethane as a model system, we show that the full core-hole (FCH) approach exhibits a pronounced supercell-size dependence originating from interactions between background charge and charged molecules, with transition energies largely changed by leading-order finite-size terms. In contrast, the excited core-hole (XCH) method rapidly converges owing to its neutral final state. We further demonstrate that most finite-size effects in FCH can be removed by Makov–Payne corrections based on multipole expansion of the electrostatic energy of charged supercells under PBC. Furthermore, we propose a simple Fermi-level-based energy correction (EF/2) that provides comparable improvement using only a single supercell. Extending the analysis to an n-alkane series reveals that while intrinsic electronic-structure changes govern peak shifts for small molecules, systematic energy drifts persist in FCH for larger molecules, whereas XCH and FCH + EF/2 remain stable. Finally, for small molecules at the C and N K-edges, XCH and FCH + EF/2 accurately reproduce experimental chemical shifts, whereas uncorrected FCH fails. These results provide practical guidelines for reliable energy alignment and chemical-shift analysis in molecular XANES under PBC, supporting robust applications to molecular, adsorption, and interfacial systems.
  • Yinan Wang, Yu Fujikata, Louis Wong, Yasuji Muramatsu, Teruyasu Mizoguchi
    Ultramicroscopy 283 114336-114336 2026年5月  査読有り
  • 村松康司
    X線分析の進歩 57 15-36 2026年3月  査読有り招待有り筆頭著者責任著者
  • Yasuji Muramatsu, Shoma Akaki, Yuya Matsumoto, Yasushi Soneda
    Carbon Reports 4(3) 234-239 2025年9月1日  査読有り筆頭著者責任著者
  • 豆﨑実夢, 中西俊雄, 瀬戸康雄, 村松康司
    X線分析の進歩 56 249-259 2025年3月  査読有り最終著者責任著者

MISC

 289

書籍等出版物

 6

講演・口頭発表等

 1019

担当経験のある科目(授業)

 5

主要な所属学協会

 13

共同研究・競争的資金等の研究課題

 20

学術貢献活動

 10

社会貢献活動

 5

メディア報道

 8