The evolution of amino acids under asteroidal aqueous alteration
Y.Y. He, S. Bernard, M. Lecasble, J.-C. Viennet, I. Criouet, D. Boulesteix, N. Khodorova, L. Delbes, M. Guillaumet, F. Baudin, B. Laurent, A. Buch, L. Remusat Geochimica et Cosmochimica ActaIn Press, Journal Pre-proof, Available online…
High surface area and interconnected nanoporosity of clay-rich astromaterialsOPEN ACCESS
Laurence A. J. Garvie, László Trif, Desireé Cotto-Figueroa, Erik Asphaug & Christian G. Hoover Scientific Reports, Volume 14, Article number: 10358 LINK (OPEN ACCESS)PDF (OPEN ACCESS) “Porosity affects key astromaterial processes from disruption in our…
Interaction between clay minerals and organics in asteroid RyuguOPEN ACCESS
J.-C. Viennet, M. Roskosz, T. Nakamura, P. Beck, B. Baptiste, B. Lavina, E.E. Alp, M.Y. Hu, J. Zhao, M. Gounelle, R. Brunetto, H. Yurimoto, T. Noguchi, R. Okazaki, H. Yabuta, H. Naraoka, K. Sakamoto, S….
Martian Magmatic Clay Minerals Forming Vesicles: Perfect Niches for Emerging Life?OPEN ACCESS
Jean-Christophe Viennet, Sylvain Bernard, Corentin Le Guillou, Violaine Sautter, Brian Grégoire, Albert Jambon, Sylvain Pont, Olivier Beyssac, Brigitte Zanda, Roger Hewins, Laurent Remusat Astrobiology, Vol. 21, No. 5Published Online: 30 Apr 2021 (Updated: 12 October…
EXAFS Determination of Clay Minerals in Martian Meteorite Allan Hills 84001 and Its Implication for the Noachian Aqueous EnvironmentOPEN ACCESS
Ryoichi Nakada, Gaku Tanabe, Iori Kajitani, Tomohiro Usui, Masashi Shidare and Tetsuya Yokoyama Minerals 2021, 11(2), 176 LINK (OPEN ACCESS)PDF (DOWNLOAD) “The aqueous environment of ancient Mars is of significant interest because of evidence suggesting…
Tardi-magmatic precipitation of Martian Fe/Mg-rich clay minerals via igneous differentiationOPEN ACCESS
J.-C. Viennet, S. Bernard, C. Le Guillou, V. Sautter, P. Schmitt-Kopplin, O. Beyssac, S. Pont, B. Zanda, R. Hewins, L. Remusat Geochemical Perspectives Letters 14, 47–52 LINK (OPEN ACCESS)PDF (OPEN ACCESS) “Mars is seen as…
Alteration minerals, fluids, and gases on early Mars: Predictions from 1-D flow geochemical modeling of mineral assemblages in meteorite ALH 84001.OPEN ACCESS
Melwani Daswani, M., Schwenzer, S. P., Reed, M. H., Wright, I. P. and Grady, M. M. Meteoritics & Planetary Science. doi: 10.1111/maps.12713 PDF (OPEN ACCESS) LINK “Clay minerals, although ubiquitous on the ancient terrains of…