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by Ti 𝐿2,3-edge electron energy-loss spectroscopy"I-C. Lin,
M. Haruta, T. Nemoto, H. Kurata,Phys. Rev. B, 110, 035109 (2024).https://doi.org/10.1103/PhysRevB.110.035109
・"Cost‑effective anode materials of nanostructure SnO2 adhered to Sterculia foetida fruit shell-derived natural porous carbon for sustainable lithium-ion batteries"W. Yodying, K. Kunniyom, T. Autthawong, M. Haruta, T. SarakonskiJ. Mater. Sci.: Mater. Electron, 35, 1506 (2024)
・"Ferroelectric freestanding hafnia membranes with metastable rhombohedral structure down to 1-nm-thick"Y. Shen, K. Ooe, XY. Yuan, T. Yamada, S. Kobayashi, M. Haruta, D, Kan, Y. Shimakawa, Nat. Commun., 15, 4789 (2024)
・"Incipient space weathering on asteroid 162173 Ryugu recorded by pyrrhotite"D. Darries et al., Meteorit. Planet. Sci.1-15 (2024)
・"Biomass Waste Utilization as Nanocomposite Anodes through Conductive Polymers Strengthened SiO2/C from Streblus asper Leaves for Sustainable Energy Storages" T. Autthawong, N. Ratsameetammajak, K. Khunpakdee, M. Haruta,T. Chairuangsri, T. SarakonsriPolymers, 16, 1414 (2024)
・"Influx of nitrogen-rich material from the outer Solar System indicated by iron nitride in Ryugu samples"T. Matsumoto et al., Nat. Astron., 8, 207-215 (2024).
・"Microstructural and chemical features of impact melts on Ryugu particle surfaces: Records of interplanetary dust hit on asteroid Ryugu"M. Matsumoto et al., Science Advance, 10, eadi7203 (2024)
・"Intrinsic Visible Plasmonic Properties of Colloidal PtIn2 Intermetallic Nanoparticles"H. Takekuma, R. Sato, K. Iida, T. Kawawaki, M. Haruta, H. Kurata, K. Nobusada, T. Teranishi Adv. Sci. 11, 2307055 (2024)
・"In situ investigation of an organic micro-globule and its mineralogical context within a Ryugu "sand" grain"VH. Phan et al., Meteorit. Planet. Sci. 1-19 (2024)
・"Four-dimensional-STEM analysis of the phyllosilicate-rich matrix of Ryugu samples"BE. Mouloud et al.,Meteorit. Planet. Sci. 1-21 (2024)