Breunnerite grain and magnesium isotope chemistry reveal cation partitioning during aqueous alteration of asteroid Ryugu.

Yoshimura T, Araoka D, Naraoka H, Sakai S, Ogawa NO, Yurimoto H, Morita M, Onose M, Yokoyama T, Bizzarro M, Tanaka S, Ohkouchi N, Koga T, Dworkin JP, Nakamura T, Noguchi T, Okazaki R, Yabuta H, Sakamoto K, Yada T, Nishimura M, Nakato A, Miyazaki A, Yogata K, Abe M, Okada T, Usui T, Yoshikawa M, Saiki T, Tanaka S, Terui F, Nakazawa S, Watanabe SI, Tsuda Y, Tachibana S, Takano Y

Open source

DOI
10.1038/s41467-024-50814-y
Published
2024 Sep 5
Container
Nature communications
Publisher
Not recorded
Open access
yes

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BibTeX

@article{allodium:10.1038/s41467-024-50814-y,
  title = {Breunnerite grain and magnesium isotope chemistry reveal cation partitioning during aqueous alteration of asteroid Ryugu.},
  author = {Yoshimura T and Araoka D and Naraoka H and Sakai S and Ogawa NO and Yurimoto H and Morita M and Onose M and Yokoyama T and Bizzarro M and Tanaka S and Ohkouchi N and Koga T and Dworkin JP and Nakamura T and Noguchi T and Okazaki R and Yabuta H and Sakamoto K and Yada T and Nishimura M and Nakato A and Miyazaki A and Yogata K and Abe M and Okada T and Usui T and Yoshikawa M and Saiki T and Tanaka S and Terui F and Nakazawa S and Watanabe SI and Tsuda Y and Tachibana S and Takano Y},
  year = {2024},
  journal = {Nature communications},
  doi = {10.1038/s41467-024-50814-y},
  url = {https://doi.org/10.1038/s41467-024-50814-y}
}

RIS

TY  - JOUR
TI  - Breunnerite grain and magnesium isotope chemistry reveal cation partitioning during aqueous alteration of asteroid Ryugu.
AU  - Yoshimura T
AU  - Araoka D
AU  - Naraoka H
AU  - Sakai S
AU  - Ogawa NO
AU  - Yurimoto H
AU  - Morita M
AU  - Onose M
AU  - Yokoyama T
AU  - Bizzarro M
AU  - Tanaka S
AU  - Ohkouchi N
AU  - Koga T
AU  - Dworkin JP
AU  - Nakamura T
AU  - Noguchi T
AU  - Okazaki R
AU  - Yabuta H
AU  - Sakamoto K
AU  - Yada T
AU  - Nishimura M
AU  - Nakato A
AU  - Miyazaki A
AU  - Yogata K
AU  - Abe M
AU  - Okada T
AU  - Usui T
AU  - Yoshikawa M
AU  - Saiki T
AU  - Tanaka S
AU  - Terui F
AU  - Nakazawa S
AU  - Watanabe SI
AU  - Tsuda Y
AU  - Tachibana S
AU  - Takano Y
PY  - 2024
JO  - Nature communications
DO  - 10.1038/s41467-024-50814-y
UR  - https://doi.org/10.1038/s41467-024-50814-y
ER  - 

APA

T, Y., D, A., H, N., S, S., NO, O., H, Y., M, M., M, O., T, Y., M, B., S, T., N, O., T, K., JP, D., T, N., T, N., R, O., H, Y., K, S., T, Y., M, N., A, N., A, M., K, Y., M, A., T, O., T, U., M, Y., T, S., S, T., F, T., S, N., SI, W., Y, T., S, T., & Y, T. (2024). Breunnerite grain and magnesium isotope chemistry reveal cation partitioning during aqueous alteration of asteroid Ryugu.. Nature communications. https://doi.org/10.1038/s41467-024-50814-y

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