Carbon atoms can diffuse and react on the surface of interstellar ice
Author:
Publisher
Springer Science and Business Media LLC
Subject
Astronomy and Astrophysics
Link
https://www.nature.com/articles/s41550-023-02074-x.pdf
Reference5 articles.
1. Cuppen, H. M. et al. Grain surface models and data for astrochemistry. Space Sci. Rev. 212, 1–58 (2017). A comprehensive review highlighting the different physical and chemical processes operating on interstellar dust grains.
2. Molpeceres, G. et al. Carbon atom reactivity with amorphous solid water: H2O-catalyzed formation of H2CO. J. Phys. Chem. Lett. 12, 10854–10860 (2021). This paper provides an explanation for the behaviour of carbon atoms on interstellar ice from a combined theoretical and experimental perspective.
3. Tsuge, M. & Watanabe, N. Behavior of hydroxyl radicals on water ice at low temperatures. Acc. Chem. Res. 54, 471–480 (2021). A review article that presents the PSD-REMPI method for detection of radicals on ice and its application to OH radicals.
4. Qasim, D. et al. An experimental study of the surface formation of methane in interstellar molecular clouds. Nat. Astron. 4, 781–785 (2020). This paper looks at the behaviour of carbon atoms at extremely low temperatures and in the presence of H atoms.
5. Miyazaki, A., Tsuge, M., Hidaka, H., Nakai, Y. & Watanabe, N. Direct determination of the activation energy for diffusion of OH radicals on water ice. Astrophys. J. Lett. 940, L2 (2022). This paper reports a methodology for determining the Esd of radicals on ice.
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1. Carbon-chain chemistry in the interstellar medium;Astrophysics and Space Science;2024-04
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