A. Aghzzaf, A. Rhouta, B. Steinmetz, J. Rocca, E. Aranda et al., Corrosion inhibitors based on chitosan-heptanoate modified bei­ dellite, Appl. Clay Sei, pp.173-178, 2012.

A. Aghzzaf, A. Rhouta, B. Rocca, E. Khalil, A. Steinmetz et al., Corrosion inhibition of zinc by calcium exchanged beidellite clay minerai: a new smart corrosion inhibitor, Corros. Sei, vol.80, pp.46-52, 2014.

A. Aghzzaf, A. Rhouta, B. Rocca, E. Khalil, and A. , Grafted palygorskite as containers of heptanoate for corrosion protection of steel in NaCl medium, Corros. Sei, vol.114, pp.88-95, 2017.

A. C. Alcântara, M. Darder, P. Aranda, and E. Ruiz-hitzky, Polysaccharide-fibrous clay bionanocomposites, Appl. Clay Sei, vol.96, issue.2-8, 2014.

P. Aranda, R. Kun, M. A. Martin-luengo, S. Letaïef, . Dékâny et al., Titartia -Sepiolite nanocomposites prepared by a surfactant templating colloidal route, Chem. Mater, vol.20, pp.84-91, 2008.

J. E. Atwater, Complex dielectric permittivities of the Ag 2 O-Ag 2 CO 3 system at microwave frequencies and temperatures between 22 "C and 189, C. Appl. Phys. A Mater. Sei. Process, vol.75, pp.555-558, 2002.

L. Boudriche, R. Calvet, A. Chamayou, B. Hamdi, and H. Balard, Removal of lead(II) from aqueous solution using modified palygorskite, contribution of inverse gas chromatography, J. Chromatogr. A, vol.1408, pp.207-216, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01609214

L. Bouna, B. Rhouta, M. Amjoud, F. Maury, M. Lafont et al., Synthesis, characterization and photocatalytic activity of TiO 2 supported natural palygorskite microfibers, Appl. Clay Sei, vol.52, pp.301-311, 2011.

, Ol 6/j

L. Bouna, B. Rhouta, L. Daoudi, F. Maury, M. Amjoud et al., Mineralogical and physico-chemical characterizations of ferruginous beidellite-rich clay from Agadir Basin (Morocco). Clay Clay Miner, vol.60, pp.278-290, 2012.
URL : https://hal.archives-ouvertes.fr/hal-01172393

F. Caixia, L. Guoguo, R. Pinhong, W. Yan, H. Xianshun et al., Effect of photo-corrosion of Ag 2 CO 3 on visible light photocatalytic activity of two kinds of Ag 2 CO 3 /"fiO 2 prepared from different precursors, Appl. Catal. B Environ, pp.224-232, 2014.

, Carine Crystallography 3.1 sofware, 1998.

O. Carp, C. L. Huisman, and A. Relier, Photoinduced reactivity of titartium dioxide, Prog. Solid State Chem, vol.32, pp.33-177, 2004.

Y. Changlin, . Wei, . Longfu, . Chen, . Jianchai et al., Enhancing the photocatalytic performance of commercial TiO2 crystals by coupling with trace narrow-band-gap Ag 2 CO 3 ? Ind, Eng. Chem. Res, vol.53, pp.5759-5766, 2014.

M. Darder, C. R. Matos, P. Aranda, R. F. Gouveia, and E. Ruiz-hitzky, Bionanocomposite foams based on the assembly of starch and alginate with sepiolite fibrous clay, Carbohydr. Polym, vol.157, pp.1933-1939, 2017.

E. Emam, G. Centi, S. Perathoner, and A. Vaccari, Clays as catalysts in petroleum refining industry, Appl. Clay Sei, vol.3, issue.98, pp.58-59, 2008.

W. S. Epling, G. B. Hoflund, and G. N. Salaita, Surface characterization study of the thermal decomposition of Ag 2 CO 3 ?, J. Phys. Chem. B, vol.102, pp.2263-2268, 1998.

R. Gout, F. Soubies, A. Bouleau, and C. Lurde, Influence de la granulométrie et de la cristallinité sur la vitesse de dissolution de l'hématite dans l'acide chlorhydrique, Cah. ORSTOM, sér. Pédol, vol.XII, pp.289-295, 1974.

T. Holtzapffel, Les minéraux argileux: préparation, analyse diffractométrique et détermination, Soc. Géol. nord, vol.12, pp.15-43, 1985.

M. Ilsouk, M. Raihane, V. Castelvetro, M. Lahcini, S. Bronco et al., Highly thermostable and crystalline poly(butylene adipate) bio­ nanocomposites prepared by in situ polycondensation with orgartically modified Moroccan beidellite clay, Polym. !nt, vol.66, 2017.

D. Jaharti, A. Ameli, M. Saniei, W. Ding, C. B. Park et al., Characterization of the structure, acoustic property, thermal conductivity, and me­ chartical property of highly expanded open-cell polycarbonate foams, 2015.

. Mater and . Eng, , vol.300, pp.48-56

G. Kenne-dedzo, E. Pameté-yambou, M. R. Topet-saheu, G. Ngnie, C. P. Nanseu-njiki et al., Hydrogen evolution reaction at Pd NPs decorated 1:1 clay minerais and application to the electrocatalytic determination of p-ni­ trophenol, J. Electroanal. Chem, vol.801, pp.49-56, 2017.

N. Koga, S. Yamada, and T. Kimura, Thermal decomposition of silver carbonate: phenomenology and physicogeometrical kinetics, J. Phys. Chem. C, vol.117, pp.326-336, 2013.

O. Lakbita, B. Rhouta, F. Maury, F. Senocq, M. Amjoud et al., Supported photocatalyst based on CuO -TiO 2 /palygorskite nanocomposite material for waste­ water treatment, J. Colloid Sei. Biotechnol, vol.5, pp.1-7, 2016.

O. Lakbita, B. Rhouta, F. Maury, F. Senocq, M. Amjoud et al., Influence of the crystal structure of Ag 2 CO 3 on the photocatalytic activity under visible light of Ag2CO 3 -Palygorskite nanocomposite material, Appl. Surf. Sei, vol.464, pp.205-211, 2019.
URL : https://hal.archives-ouvertes.fr/hal-01879719

G. Laufer, C. Kirkland, A. A. Cain, and J. C. Grunlan, Clay-chitosan nanobrick walls: completely renewable gas barrier and flame-retardant nanocoatings, ACS Appl. Mater. Interfaces, vol.4, pp.1643-1649, 2012.

X. Liu and R. Wang, Effective removal of hydrogen sulfide using 4A molecular sieve zeolite synthesized from attapulgite, J. Hazard. Mater, vol.326, pp.157-164, 2017.

R. Masse, J. C. Guitel, and A. Durif, Structure du carbonate d'argent, Acta Crystallogr. Sect. B Struct. Crystallogr. Cryst. Chem, vol.35, pp.1428-1429, 1979.

A. Michau, F. Maury, F. Schuster, R. Boichot, and M. Pons, Evidence for a Cr me­ tastable phase as a tracer in DLI-MOCVD chromium bard coatings usable in high temperature environment, Appl. Surf. Sei, vol.422, pp.198-206, 2017.

R. Msaadi, S. Ammar, M. M. Chehimi, and Y. Yagci, Diazonium-based ion-imprinted polymer/clay nanocomposite for the selective extraction of lead (II) ions in aqueous media, Eur. Polym. J, vol.89, pp.367-380, 2017.

T. Mudrinié, Z. Mojovié, A. Milutinovié-nikolié, M. Mojovié, M. Zunié et al., Electrochemical activity of iron in aeid treated bentonite and influence of added nickel, Appl. Surf. Sei, vol.353, pp.1037-1045, 2015.

D. Nagy, J. B. Vergette, and J. P. Connolly, Differential thermal analysis studies on Ag2CO3? Can, J. Chem, vol.49, pp.3986-3993, 1971.

P. Norby, R. Dinnebier, and A. N. Fitch, Decomposition of silver carbonate; the crystal structure of two high-temperature modifications of Ag 2 CO 3 ?, Inorg. Chem, vol.41, pp.3628-3637, 2002.

J. Pérez-carvajal, P. Aranda, S. Obreg6n, G. Colon, and E. Ruiz-hitzky, TiO 2 -clay based nanoarchitectures for enhanced photocatalytic hydrogen production, Microporous Mesoporous Mater, vol.222, pp.120-127, 2016.

N. V. Praneeth and S. Paria, Clay-semiconductor nanocomposites for photocatalytic applications, Clay Minerais: Properties, Occurrence and Uses, pp.144-184, 2017.

H. M. Rahman, M. Kennedy, S. Lohr, and D. N. Dewhurst, Clay-organic association as a control on hydrocarbon generation in shale, Org. Geochem, vol.105, pp.42-55, 2017.
DOI : 10.1016/j.orggeochem.2017.01.011

B. Rhouta, E. Zatile, L. Bouna, O. Lakbita, F. Maury et al., Comprehensive physicochemical study of dioctahedral palygorskite-rich clay from Marrakech High Atlas, 2013.
DOI : 10.1007/s00269-013-0579-3

URL : https://hal.archives-ouvertes.fr/hal-01172017

, Phys. Chem. Miner, vol.40, pp.411-424

J. H. Roque-ruiz, E. A. Cabrera-ontiveros, J. Torres-pérez, and S. Y. Reyes-l6pez, Preparation of PCL/clay and PVA/clay electrospun fibers for Cadmium, Chromium (Cr +3 ), Copper (Cu +2 ) and Lead (Pb +2 ) removal from water. Water Air Soi! Poilu!. 227, 2016.

A. Roy, B. S. Butola, and M. Joshi, Synthesis, characterization and antibacterial properties of nove! nano-silver loaded aeid activated montmorillonite, Appl. Clay Sei, vol.146, pp.278-285, 2017.
DOI : 10.1016/j.clay.2017.05.043

Y. Sawada and K. Manabe, Thermal decomposition of silver carbonate, J. Therm. Anal, vol.37, pp.1657-1663, 1991.
DOI : 10.1016/0040-6031(91)80464-t

Y. Sawada, N. Mizutani, and M. Kato, Thermal decomposition of silver carbonate, Thermochim. Acta, vol.143, pp.319-324, 1989.
DOI : 10.1016/0040-6031(91)80464-t

Y. Sawada, N. Mizutani, and M. Kato, Thermal decomposition of silver carbonate Part III. High temperature X-ray diffraction analysis, Thermochim. Acta, vol.146, issue.89, p.87087, 1989.

Y. Sawada, N. Watanabe, H. Henmi, N. Mizutani, and M. Kato, Thermal decom­ position of silver carbonate, Thermochim. Acta, vol.138, issue.89, pp.87262-87266, 1989.
DOI : 10.1016/0040-6031(91)80464-t

Y. Sawada, N. Kanou, and N. Mizutani, Thermal decomposition of silver carbonate. Part 4. High pressure differential thermal analysis under an atrnosphere of carbon dioxide, Thermochim. Acta, vol.183, p.80464, 1991.
DOI : 10.1016/0040-6031(91)80464-t

A. Seidell and W. F. Linke, Solubilities of Inorganic and Organic Compounds, p.605, 1919.

M. Tominaga, Y. Oniki, S. Mochida, K. Kasatani, S. Tani et al., Clay-organic hybrid films exhibiting reversible fluorescent color switching induced by swelling and drying of a clay minerai, J. Phys. Chem. C, vol.120, pp.23813-23822, 2016.
DOI : 10.1021/acs.jpcc.6b07537

F. Wenjun, W. Ping, Y. Bing, Y. Fengling, L. Dapeng et al., Ag3PO.JAg2CO3 p-n heterojunction composites with enhanced photocatalytic activity under visible light, Chin. J. Catal, vol.36, pp.2186-2193, 2015.

H. Xu, J. Zhu, Y. Song, T. Zhu, W. Zhao et al., Fabrication of AgX-loaded Ag 2 CO 3 (X= Cl, I) composite and their efficient visible­ light-driven photocatalytic activity, J. Alloys Compounds, vol.622, pp.347-357, 2015.
DOI : 10.1016/j.jallcom.2014.09.148

Y. Yang and G. Zhang, Preparation and photocatalytic properties of visible light driven Ag\AgBr/attapulgite nanocomposite, Appl. Clay Sei. 67, vol.68, pp.11-17, 2012.
DOI : 10.1016/j.clay.2012.06.013