Hostname: page-component-848d4c4894-8kt4b Total loading time: 0 Render date: 2024-07-07T19:40:16.186Z Has data issue: false hasContentIssue false

Gas phase reaction kinetics of complex organic molecules at temperatures of the interstellar medium: The OH + CH3OH case

Published online by Cambridge University Press:  12 October 2020

André Canosa*
Affiliation:
Univ. Rennes, CNRS, IPR (Institut de Physique de Rennes) - UMR 6251, F-35000 Rennes, France email: [email protected]
Rights & Permissions [Opens in a new window]

Abstract

Core share and HTML view are not available for this content. However, as you have access to this content, a full PDF is available via the ‘Save PDF’ action button.

Recent experimental and theoretical works concerning gas-phase radical-neutral reactions involving Complex Organic Molecules are reviewed in the context of cold interstellar objects with a special emphasis on the OH + CH3OH reaction and its potential impact on the formation of CH3O.

Type
Contributed Papers
Copyright
© International Astronomical Union 2020

References

Acharyya, K., Herbst, E., Caravan, R. L., Shannon, R. J., Blitz, M. A., & Heard, D. E. 2015, Molec. Phys, 113, 2243 CrossRefGoogle Scholar
Antiñolo, M., Agúndez, M., Jiménez, E., Ballesteros, B., Canosa, A., El Dib, G., Albaladejo, J., & Cernicharo, J. 2016, ApJ, 823, 25 CrossRefGoogle Scholar
Bacmann, A., Taquet, V., Faure, A., Kahane, C., & Ceccarelli, C. 2012, A&A, 541, L12 Google Scholar
Balucani, N., Ceccarelli, C., & Taquet, V. 2015, MNRAS, 449, L16 CrossRefGoogle Scholar
Blázquez, S., González, D., García-Sáez, A., Antiñolo, M., Bergeat, A., Caralp, F., Mereau, R., Canosa, A., Ballesteros, B., Albaladejo, J., & Jiménez, E. 2019, ACS - Earth Space Chem, 3, 1873 CrossRefGoogle Scholar
Caravan, R. L., Shannon, R. J., Lewis, T., Blitz, M. A., & Heard, D. E. 2015, J. Phys. Chem. A, 119, 7130 CrossRefGoogle Scholar
Cernicharo, J., Marcelino, N., Roueff, E., Gerin, M., Jiménez-Escobar, A., & Muñoz-Caro, G. M. 2012, ApJL, 759, L43 CrossRefGoogle Scholar
Cummins, S. E., Linke, R. A., & Thaddeus, P. 1986, ApJS, 60, 819 CrossRefGoogle Scholar
del Mazo-Sevillano, P., Aguado, A., Jiménez, E., Suleimanov, Y. V., & Roncero, O. 2019, J. Phys. Chem. Lett., 10, 1900 CrossRefGoogle Scholar
Dillon, T. J., Holscher, D., Sivakumaran, V., Horowitz, A., & Crowley, J. N. 2005, PCCP, 7, 349 CrossRefGoogle Scholar
Galano, A., Alvarez-Idaboy, J. R., Bravo-Pérez, G., & Ruiz-Santoyo, M. E. 2002, PCCP, 4, 4648 CrossRefGoogle Scholar
Gao, L. G., Zheng, J. J., Fernández-Ramos, A., Truhlar, D. G., & Xu, X. F. 2018, JACS, 140, 2906 CrossRefGoogle Scholar
Garrod, R. T. & Herbst, E. 2006, A&A, 457, 927 Google Scholar
Gómez Martín, J. C., Caravan, R. L., Blitz, M. A., Heard, D. E., & Plane, J. M. C. 2014, J. Phys. Chem. A, 118, 2693 CrossRefGoogle Scholar
Hess, W. P. & Tully, F. P. 1989, J. Phys. Chem., 93, 1944 CrossRefGoogle Scholar
Jiménez, E., Antiñolo, M., Ballesteros, B., Canosa, A., & Albaladejo, J. 2016, PCCP, 18, 2183 CrossRefGoogle Scholar
Nguyen, T. L., Ruscic, B., & Stanton, J. F. 2019, J. Chem. Phys., 150, 084105 CrossRefGoogle Scholar
Öberg, K. I. R., Bottinelli, S., Jørgensen, J. K., & van Dishoeck, E. F. 2010, ApJ, 716, 825 CrossRefGoogle Scholar
Ocaña, A. J., Blázquez, S., Ballesteros, B., Canosa, A., Antiñolo, M., Albaladejo, J., & Jiménez, E. 2018, PCCP, 20, 5865 CrossRefGoogle Scholar
Ocaña, A. J., Blázquez, S., Potapov, A., Ballesteros, B., Canosa, A., Antiñolo, M., Vereecken, L., Albaladejo, J., & Jiménez, E. 2019, PCCP, 21, 6942 CrossRefGoogle Scholar
Ocaña, A. J., Jiménez, E., Ballesteros, B., Canosa, A., Antiñolo, M., Albaladejo, J., Agúndez, M., Cernicharo, J., Zanchet, A., del Mazo, P., Roncero, O., & Aguado, A. 2017, ApJ, 850, 28 10.3847/1538-4357/aa93d9CrossRefGoogle Scholar
Potapov, A., Canosa, A., Jiménez, E., & Rowe, B. R. 2017, Angew. Chem. Int. Ed., 56, 8618 CrossRefGoogle Scholar
Roncero, O., Zanchet, A., & Aguado, A. 2018, PCCP, 20, 25951 CrossRefGoogle Scholar
Shannon, R. J., Blitz, M. A., Goddard, A., & Heard, D. E. 2013, Nature Chem., 5, 745 CrossRefGoogle Scholar
Shannon, D. E., Caravan, R. L., Blitz, M. A., & Heard, D. E. 2014a, PCCP, 16, 3466 CrossRefGoogle Scholar
Shannon, R. J., Cossou, C., Loison, J. C., Caubet, P., Balucani, N., Seakins, P. W., Wakelam, V., & Hickson, K. M. 2014b, RSC Adv, 4, 26342 CrossRefGoogle Scholar
Shannon, R. J., Taylor, S., Goddard, A., Blitz, M. A., & Heard, D. E. 2010, PCCP, 12, 13511 CrossRefGoogle Scholar
Sleiman, C., El Dib, G., Rosi, M., Skouteris, D., Balucani, N., & Canosa, A. 2018a, PCCP, 20, 5478 CrossRefGoogle Scholar
Sleiman, C., El Dib, G., Talbi, D., & Canosa, A. 2018b, ACS - Earth Space Chem, 2, 1047 CrossRefGoogle Scholar
Sleiman, C., González, S., Klippenstein, S. J., Talbi, D., El Dib, G., & Canosa, A. 2016, PCCP, 18, 15118 CrossRefGoogle Scholar
Vastel, C., Ceccarelli, C., Lefloch, B., & Bachiller, R. 2014, ApJL, 795, L2 CrossRefGoogle Scholar
Vasyunin, A. I. & Herbst, E. 2013, ApJ, 769, 34 CrossRefGoogle Scholar