J. Israelachvili and H. Wennerström, Role of hydration and water structure in biological and colloidal interactions, Nature, vol.379, pp.219-225, 1996.

G. E. Brown, How minerals react with water, Science, vol.294, pp.67-69, 2001.

J. Klein and E. Kumacheva, Confinement-induced phase transitions in simple liquids, Science, vol.269, pp.816-819, 1995.

M. Majumder, A. Siria, and L. Bocquet, Flows in one dimensional and twodimensional carbon nanochannels: fast and curious, MRS Bull, vol.42, pp.278-282, 2017.

G. Hummer, J. C. Rasaiah, and J. P. Noworyta, Water conduction through the hydrophobic channel of a carbon nanotube, Nature, vol.414, pp.188-190, 2001.

S. Guo, E. R. Meshot, T. Kuykendall, S. Cabrini, and F. Fornasiero, Nanofluidic transport through isolated carbon nanotube channels: advances, controversies, and challenges, Adv. Mater, vol.27, pp.5726-5737, 2015.

E. Secchi, Massive radius-dependent flow slippage in carbon nanotubes, Nature, vol.537, pp.210-213, 2016.

K. Celebi, Ultimate permeation across atomically thin porous graphene, Science, vol.344, pp.289-292, 2014.

B. Radha, Molecular transport through capillaries made with atomicscale precision, Nature, vol.538, pp.222-225, 2016.

A. Akbari, Large-area graphene-based nanofiltration membranes by shear alignment of discotic nematic liquid crystals of graphene oxide, Nat. Commun, vol.7, p.10891, 2016.

R. K. Joshi, Precise and ultrafast molecular sieving through graphene oxide membranes, Science, vol.343, pp.752-754, 2014.

D. A. Dikin, Preparation and characterization of graphene oxide paper, Nature, vol.448, pp.457-460, 2007.

A. R. Koltonow and J. Huang, Two-dimensional nanofluidics, Science, vol.351, pp.1395-1396, 2016.

A. Siria, Giant osmotic energy conversion measured in a single transmembrane boron nitride nanotube, Nature, vol.494, pp.455-458, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00959984

H. G. Park and Y. Jung, Carbon nanofluidics of rapid water transport for energy applications, Chem. Soc. Rev, vol.43, pp.565-576, 2014.

A. Aghigh, Recent advances in utilization of graphene for filtration and desalination of water: a review, Desalination, vol.365, pp.389-397, 2015.

H. M. Hegab and L. Zou, Graphene oxide-assisted membranes: fabrication and potential applications in desalination and water purification, J. Membr. Sci, vol.484, pp.95-106, 2015.

J. Shao, K. Raidongia, A. R. Koltonow, and J. Huang, Selfassembled twodimensional nanofluidic proton channels with high thermal stability, Nat. Commun, vol.6, p.7602, 2015.

S. Gravelle, H. Yoshida, L. Joly, C. Ybert, and L. Bocquet, Carbon membranes for efficient water-ethanol separation, J. Chem. Phys, vol.145, p.124708, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01628789

J. Feng, Single-layer MoS 2 nanopores as nanopower generators, Nature, vol.536, pp.197-200, 2016.

P. Hirunsit and P. B. Balbuena, Effects of confinement on water structure and dynamics: a molecular simulation study, J. Phys. Chem. C, vol.111, pp.1709-1715, 2007.

G. Cicero, J. C. Grossman, E. Schwegler, F. Gygi, and G. Galli, Water confined in nanotubes and between graphene sheets: a first principle study, J. Am. Chem. Soc, vol.130, pp.1871-1878, 2008.

G. Algara-siller, Square ice in graphene nanocapillaries, Nature, vol.519, pp.443-445, 2015.

J. Chen, G. Schusteritsch, C. J. Pickard, C. G. Salzmann, and A. Michaelides, Two dimensional ice from first principles: structures and phase transitions, Phys. Rev. Lett, vol.116, p.25501, 2016.

K. V. Agrawal, S. Shimizu, L. W. Drahushuk, D. Kilcoyne, and M. S. Strano, Observation of extreme phase transition temperatures of water confined inside isolated carbon nanotubes, Nat. Nanotechnol, vol.12, pp.267-273, 2017.

X. Zhou, Layering of confined water between two graphene sheets and its liquid-liquid transition, Chin. Phys. B, vol.26, p.106401, 2017.

R. C. Major, J. E. Houston, M. J. Mcgrath, J. I. Siepmann, and X. Zhu, Viscous water meniscus under nanoconfinement, Phys. Rev. Lett, vol.96, p.177803, 2006.

L. Bocquet and E. Charlaix, Nanofluidics, from bulk to interfaces, Chem. Soc. Rev, vol.39, pp.1073-1095, 2010.

R. R. Nair, H. A. Wu, P. N. Jayaram, I. V. Grigorieva, and A. K. Geim, Unimpeded permeation of water through helium-leak-tight graphene-based membranes, Science, vol.335, pp.442-444, 2012.

H. Huang, Ultrafast viscous water flow through nanostrand-channelled graphene oxide membranes, Nat. Commun, vol.4, p.2979, 2013.

K. Norrish, The swelling of montmorillonite, Discuss. Faraday Soc, vol.18, pp.120-134, 1954.

F. Kraehenbuehl, H. F. Stoeckli, F. Brunner, G. Kahr, and M. Mueller-vonmoos, Study of the water-bentonite system by vapour adsorption immersion calorimetry and X-ray techniques: I. Micropore volumes and internal surface areas following Dubinin's theory, Clay Miner, vol.22, pp.1-9, 1987.

F. T. Madsen and M. Müller-vonmoos, The swelling behaviour of clays, Appl. Clay Sci, vol.4, pp.143-156, 1989.

B. Dazas, Smectite fluorination and its impact on interlayer water content and structure: a way to fine tune the hydrophilicity of clay surfaces?, Micro. Mesopor. Mat, vol.181, pp.233-247, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00858471

M. Antognozzi, A. D. Humphris, and M. J. Miles, Observation of molecular layering in a confined water lm and study of the layers viscoelastic properties, Appl. Phys. Lett, vol.78, pp.300-302, 2001.

J. Song, Evidence of Stranski-Krastanov growth at the initial stage of atmospheric water condensation, Nat. Commun, vol.5, p.4837, 2014.

M. Ghosh, Confined water layers in grapheme oxide probed with spectroscopic ellipsometry, Appl. Phys. Lett, vol.106, p.241902, 2015.

B. Roman and J. Bico, Elasto-capillarity: deforming an elastic structure with a liquid droplet, J. Phys. Condens. Matter, vol.22, p.493101, 2010.

S. Jiao, C. Duan, and Z. Xu, Structures and thermodynamics of water encapsulated by graphene, Sci. Rep, vol.7, p.2646, 2017.

J. N. Israelachvili and G. E. Adams, Measurement of forces between two mica surfaces in aqueous electrolyte solutions in the range 0-100 nm, J. Chem. Soc. Faraday Trans. 1, vol.74, pp.975-1001, 1978.

R. M. Pashley and J. N. Israelachvili, Molecular layering of water in thin films between mica surfaces and its relation to hydration forces, J. Colloid Interf. Sci, vol.101, pp.511-523, 1984.

B. Rotenberg, A. J. Patel, and D. Chandler, Molecular explanation for why talc surfaces can be both hydrophilic and hydrophobic, J. Am. Chem. Soc, vol.133, pp.20521-20527, 2011.
DOI : 10.1021/ja208687a

URL : https://hal.archives-ouvertes.fr/hal-01897604

J. H. Gaddum, Lognormal distributions, Nature, vol.156, pp.463-466, 1945.

A. Vrij, Possible mechanism for the spontaneous rupture of thin, free liquid films, Discuss. Faraday Soc, vol.42, pp.23-33, 1966.

J. E. Coons, P. J. Halley, S. A. Mcglashan, and T. Tran-cong, A review of drainage and spontaneous rupture in free standing thin films with tangentially immobile interfaces, Adv. Colloid Interf. Sci, vol.105, pp.3-62, 2003.

J. H. Yao, K. R. Elder, H. Guo, and M. Grant, Theory and simulation of Ostwald ripening, Phys. Rev. B, vol.47, p.14110, 1993.
DOI : 10.1103/physrevb.47.14110

T. M. Rogers and R. C. Desai, Numerical study of late-stage coarsening for offcritical quenches in the Cahn-Hilliard equation of phase separation, Phys. Rev. B, vol.39, p.11956, 1989.

W. I. Higuchi and J. Misra, Physical degradation of emulsions via the molecular diffusion route and the possible prevention thereof, J. Pharm. Sci, vol.51, pp.459-466, 1962.

A. S. Kabal'nov, A. V. Pertzov, and E. D. Shchukin, Ostwald ripening in twocomponent disperse phase systems: application to emulsion stability, Colloid. Surface, vol.24, pp.19-32, 1987.

E. Khestanova, F. Guinea, L. Fumagalli, A. K. Geim, and I. V. Grigorieva, Universal shape and pressure inside bubbles appearing in van der Waals heterostructures, Nat. Commun, vol.7, p.12587, 2016.
DOI : 10.1038/ncomms12587

URL : https://doi.org/10.1038/ncomms12587

B. Widom, Some topics in the theory of fluids, J. Chem. Phys, vol.39, pp.2808-2812, 1963.

D. Frenkel and B. Smit, Understanding molecular simulation: from algorithms to applications, 2001.
DOI : 10.1063/1.881812

E. Schneck, F. Sedlmeier, and R. R. Netz, Hydration repulsion between biomembranes results from an interplay of dehydration and depolarization, Proc. Natl. Acad. Sci, vol.109, pp.14405-14409, 2012.

R. Metzler and J. Klafter, The random walk's guide to anomalous diffusion: a fractional dynamics approach, Phys. Rep, vol.339, pp.1-77, 2000.

T. J. Feder, I. Brust-mascher, J. P. Slattery, B. Baird, and W. W. Webb, Constrained diffusion or immobile fraction on cell surfaces: a new interpretation, Biophys. J, vol.70, pp.2767-2773, 1996.
DOI : 10.1016/s0006-3495(96)79846-6

URL : https://doi.org/10.1016/s0006-3495(96)79846-6

J. L. Abascal and C. Vega, A general purpose model for the condensed phases of water: TIP4P, J. Chem. Phys, vol.123, p.234505, 2005.

R. Zangi, Water confined to a slab geometry: a review of recent computer simulation studies, J. Phys. Condens. Matter, vol.16, p.5371, 2004.

M. Ma, G. Tocci, A. Michaelides, and G. Aeppli, Fast diffusion of water nanodroplets on graphene, Nat. Mater, vol.15, pp.66-71, 2016.
DOI : 10.1038/nmat4449

URL : http://arxiv.org/pdf/1611.08156

D. Vella, A. Boudaoud, and M. Adda-bedia, Statics and inertial dynamics of a ruck in a rug, Phys. Rev. Lett, vol.103, p.174301, 2009.

F. F. Abraham, The interfacial density profile of a Lennard-Jones fluid in contact with a (100) Lennard-Jones wall and its relationship to idealized fluid/ wall systems: a Monte Carlo simulation, J. Chem. Phys, vol.68, pp.3713-3716, 1978.

W. Han and S. M. Lindsay, Probing molecular ordering at a liquid-solid interface with a magnetically oscillated atomic force microscope, Appl. Phys. Lett, vol.72, pp.1656-1658, 1998.
DOI : 10.1063/1.121143

V. Franz and H. Butt, Confined liquids: solvation forces in liquid alcohols between solid surfaces, J. Phys. Chem. B, vol.106, pp.1703-1708, 2002.
DOI : 10.1021/jp012541w

M. Ma, Water transport inside carbon nanotubes mediated by phononinduced oscillating friction, Nat. Nanotechnol, vol.10, pp.692-695, 2015.
DOI : 10.1038/nnano.2015.134