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メンバー

2026.07.31


業績リスト
平川 祐太

査読付き論文

  • Oba, Y., Tomaru, T., Koga, T., Furukawa, Y., Sunami, S., Yoshimura, T., Hirakawa, Y., Ogawa, N.O., Ohkouchi, N., Kuwamoto, K., Takano, Y., and Naraoka, H. (2026) Distribution of purine and pyrimidine bases in Antarctic carbonaceous meteorites. Geochimica et Cosmochimica Acta, in press. https://doi.org/10.1016/j.gca.2026.06.040
  • Oba, Y., Koga, T., Takano, Y., Naraoka, H., Hirakawa, Y., Sunami, S., Furukawa, Y., Yamazaki, T., Tomaru, T., Dworkin, J.P., Glavin, D.P., Connolly, H.C., and Lauretta, D.S. (2026) Distribution of extraterrestrial nucleobases, other N-heterocycles, and their precursors in a sample from asteroid Bennu. Communications Chemistry, 9:132. https://doi.org/10.1038/s42004-026-01966-z
  • Hirakawa, Y., Kim, H.-J., Furukawa, Y., Abraham, C., Peng, T.-W., Biondi, E., and Benner, S.A. (2025) Interstep compatibility of a model for the prebiotic synthesis of RNA with Hadean natural history. Proceedings of the National Academy of Sciences of the United States of America, 122(51), e2516418122. https://doi.org/10.1073/pnas.2516418122
  • Furukawa, Y., Sunami, S., Takano, Y., Koga, T., Hirakawa, Y., Oba, Y., Naraoka, H., Saigusa, D., Yoshikawa, T., Tanaka, S., Glavin, D.P., Dworkin, J.P., Connolly Jr., H.C., and Lauretta, D.S. (2025) Bio-essential sugars in samples from asteroid Bennu. Nature Geoscience, 19, 19–24. doi:10.1038/s41561-025-01838-6. [Open Access]
  • Hirakawa, Y., Koga, T., Suzuki, T., Ohkouchi, N., and Takano, Y. (2025) Analytical Development for Detecting Femtomole-Level Organophosphorus Compounds in Biogeochemical Samples by Ion Chromatography/High-Resolution Mass Spectrometry. ACS Omega, 10(36), 42061–42067. doi:10.1021/acsomega.5c07173. [Open Access]
  • Hirakawa, Y., Kakegawa, T., Furukawa, Y. (2024) Hexose phosphorylation for a non-enzymatic glycolysis and pentose phosphate pathway on early Earth. Scientific Reports, 14:264. doi:10.1038/s41598-023-50743-8. [Open Access]
  • Takabayashi, M., Hirakawa, Y., Kakegawa, T., Furukawa, Y. (2023) Abiotic formation of ribose 5’-phosphate from ribose and apatite with carbonate- and formate-rich solutions. Geochemical Journal, 57(5), 134-142. doi:10.2343/geochemj.gj23012. [Open Access]
  • Hirakawa, Y., Kakegawa, T., Furukawa, Y. (2022) Borate-guided ribose phosphorylation for prebiotic nucleotide synthesis. Scientific Reports, 12:11828, doi:10.1038/s41598-022-15753-y. [Open Access]