. Castellanos-gomez, N. Agraït, and G. Rubio-bollinger, Dynamics of quartz tuning fork force sensors used in scanning probe microscopy, Nanotechnology, vol.20, p.215502, 2009.

L. Garcia, A micro-nano-rheometer for the mechanics of soft matter at interfaces, Review of Scientific Instruments, vol.87, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01581974

F. J. Giessibl, Atomic resolution on Si (111)-(7\times 7) by noncontact atomic force microscopy with a force sensor based on a quartz tuning fork, Applied Physics Letters, vol.76, pp.1470-1472, 2000.

F. J. Giessibl, High-speed force sensor for force microscopy and profilometry utilizing a quartz tuning fork, Applied Physics Letters, vol.73, pp.3956-3958, 1998.

F. J. Giessibl, Advances in atomic force microscopy, Reviews of Modern Physics, vol.75, pp.949-983, 2003.

B. Hecht, B. Sick, U. P. Wild, O. J. Martin, and D. W. Pohl, Scanning near-field optical microscopy with aperture probes : Fundamentals and applications, vol.112, pp.7761-7774, 2000.

, THE TUNING FORK BASED ATOMIC FORCE MICROSCOPE

M. Heyde, M. Kulawik, H. P. Rust, and H. J. Freund, Double quartz tuning fork sensor for low temperature atomic force and scanning tunneling microscopy, Review of Scientific Instruments, vol.75, pp.2446-2450, 2004.

J. N. Israelachvili and D. Tabor, The Measurement of Van Der Waals Dispersion Forces in the Range 1.5 to 130 nm, Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, vol.331, pp.19-38, 1972.

K. Karraï and R. D. Grober, Piezo-electric tuning fork tip-sample distance control for near field optical microscopes, Ultramicroscopy, vol.61, pp.197-205, 1995.

S. Kawai, Superlubricity of graphene nanoribbons on gold surfaces, Science, vol.351, pp.957-961, 2016.

S. Kawai, Direct quantitative measurement of the C==O···H-C bond by atomic force microscopy, Science Advances, vol.3, p.1603258, 2017.

J. Klein, Forces between mica surfaces bearing layers of adsorbed polystyrene in cyclohexane, 1980.

J. Klein, Forces between mica surfaces bearing adsorbed macromolecules in liquid media, Journal of the Chemical Society, Faraday Transactions, vol.1, p.99, 1983.

M. Kulawik, A double lamellae dropoff etching procedure for tungsten tips attached to tuning fork atomic force microscopy/scanning tunneling microscopy sensors, Review of Scientific Instruments, vol.74, pp.1027-1030, 2003.

M. Labardi and M. Allegrini, Noncontact friction force microscopy based on quartz tuning fork sensors, Applied Physics Letters, vol.89, pp.24-27, 2006.

J. D. Mcgraw, A. Niguès, A. Chennevière, and A. Siria, Contact Dependence and Velocity Crossover in Friction between Microscopic Solid/Solid Contacts, Nano Letters, vol.17, pp.6335-6339, 2017.

A. J. Melmed, The art and science and other aspects of making sharp tips, Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures, vol.9, p.601, 1991.

S. M. Meyer, Noncontact Atomic Force Microscopy isbn, pp.978-981, 2002.

A. Niguès, . Siria, P. Vincent, P. Poncharal, and L. Bocquet, Ultrahigh interlayer friction in multiwalled boron nitride nanotubes, Nature materials, vol.13, pp.688-93, 2014.

A. Niguès, Manipulation dans le micro / nanomonde : Dispositif haptique préhensile PhD thesis, 2006.

W. H. Rensen, Tuning Fork Tunes: exploring new scanning probe applications PhD thesis, 2002.

F. Restagno, J. Crassous, É. Charlaix, C. Cottin-bizonne, and M. Monchanin, A new surface forces apparatus for nanorheology, Review of Scientific Instruments, vol.73, p.2292, 2002.

A. Ricchiuto and A. Tozzi, Motion of a harmonic oscillator with sliding and viscous friction, American Journal of Physics, vol.50, pp.176-179, 1982.

N. Agraït, G. Rubio, and S. Vieira, Plastic deformation of nanometer-scale gold connective necks, Physical Review Letters, vol.74, pp.3995-3998, 1995.

N. Agraït, A. L. Yeyati, and J. M. Van-ruitenbeek, Quantum properties of atomic-sized conductors, Physics Reports, vol.377, pp.81-279, 2003.

N. Agraït, A. L. Yeyati, and J. M. Van-ruitenbeek, Quantum properties of atomic-sized conductors, Physics Reports, vol.377, pp.81-279, 2003.

L. Bocquet, A. Colin, and A. Ajdari, Kinetic theory of plastic flow in soft glassy materials, Physical Review Letters, vol.103, pp.1-4, 2009.

E. Charlaix and J. Crassous, Adhesion forces between wetted solid surfaces, Journal of Chemical Physics, vol.122, 2005.

C. Q. Chen, Y. Shi, Y. S. Zhang, J. Zhu, and Y. J. Yan, Size dependence of Young's modulus in ZnO nanowires, Physical Review Letters, vol.96, pp.1-4, 2006.

M. Chen, Deformation twinning in nanocrystalline aluminum, Science, vol.300, pp.1275-1277, 2003.

S. Cohen-addad, R. Höhler, and O. Pitois, Flow in Foams and Flowing Foams, Annual Review of Fluid Mechanics, vol.45, pp.241-267, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00786935

J. Crassous, E. Charlaix, H. Gayvallet, and J. Loubet, Experimental study of a nanometric liquid bridge with a surface force apparatus, Langmuir, vol.9, pp.1995-1998, 1993.

J. Crassous, E. Charlaix, and J. Loubet, Nanoscale Investigation of Wetting Dynamics with a Surface Force Apparatus, Physical Review Letters, vol.78, pp.2425-2428, 1997.

J. Crassous, M. Ciccotti, and E. Charlaix, Capillary force between wetted nanometric contacts and its application to atomic force microscopy, Langmuir, vol.27, pp.3468-3473, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00711907

J. A. Dijksman, G. Wortel, and M. Van-hecke, Rheology of weakly vibrated granular materials, AIP Conference Proceedings, vol.1145, pp.343-346, 2009.

J. A. Dijksman, G. H. Wortel, L. T. Van-dellen, O. Dauchot, and M. Van-hecke, Jamming, yielding, and rheology of weakly vibrated granular media, Physical Review Letters, vol.107, pp.1-4, 2011.
URL : https://hal.archives-ouvertes.fr/hal-01422391

C. Eisenmann, C. Kim, J. Mattsson, and D. A. Weitz, Shear melting of a colloidal glass, Physical Review Letters, vol.104, pp.8-11, 2010.

H. D. Espinosa, B. C. Prorok, and B. Peng, Plasticity size effects in free-standing submicron polycrystalline FCC films subjected to pure tension, Journal of the Mechanics and Physics of Solids, vol.52, pp.667-689, 2004.

J. Frenkel, Zur Theorie der Elastizitatsgrenze und der Festigkeit kristallinischer Korper, Zeitschrift fur Physik, vol.37, pp.572-609, 1926.

J. R. Greer and J. T. De-hosson, Plasticity in small-sized metallic systems: Intrinsic versus extrinsic size effect, Progress in Materials Science, vol.56, pp.654-724, 2011.

J. Güttinger, Energy-dependent path of dissipation in nanomechanical resonators, Nature Nanotechnology, vol.12, pp.631-636, 2017.

S. M. Kaufman and T. J. Whalen, The surface tension of liquid gold, liquid tin, and liquid gold-tin binary solutions, Acta Metallurgica, vol.13, pp.797-805, 1965.

O. Kraft, P. A. Gruber, R. Mönig, and D. Weygand, Plasticity in Confined Dimensions, Annual Review of Materials Research, vol.40, pp.293-317, 2010.

L. Kuipers and J. W. Frenken, Jump to contact, neck formation, and surface melting in the scanning tunneling microscope, Physical Review Letters, vol.70, pp.3907-3910, 1993.

S. Lee, Reversible cyclic deformation mechanism of gold nanowires by twinningâdetwinning transition evidenced from in situ TEM, Nature Communications, vol.5, pp.1-10, 2014.

W. Lu and C. M. Lieber, Nanoelectronics from the bottom up, Nature Materials, vol.6, pp.841-850, 2007.

P. E. Marszalek, W. J. Greenleaf, H. Li, A. F. Oberhauser, and J. M. Fernandez, Atomic force microscopy captures quantized plastic deformation in gold nanowires, Proceedings of the National Academy of Sciences of the United States of America, vol.97, pp.6282-6286, 2000.

C. M. Mate, Tribology on the Small Scale: A Bottom Up Approach to Friction, Lubrication, and Wear 1-354, p.9780191712098, 2008.

D. Mordehai, Size effect in compression of single-crystal gold microparticles, Acta Materialia, vol.59, pp.5202-5215, 2011.

C. Muller and J. Krans, Quantization effects in the conductance of metallic contacts at room temperature, Physical Review B -Condensed Matter and Materials Physics, vol.53, pp.1022-1025, 1996.

M. H. Müser, Meeting the Contact-Mechanics Challenge, Tribology Letters, p.65, 2017.

H. Ohnishi, Y. Kondo, and K. Takayanagi, Quantized conductance through individual rows of suspended gold atoms, Nature, vol.395, pp.780-783, 1998.

B. N. Persson, O. Albohr, U. Tartaglino, A. I. Volokitin, and E. Tosatti, On the nature of surface roughness with application to contact mechanics, sealing, rubber friction and adhesion, Journal of Physics Condensed Matter, vol.17, pp.1-62, 2005.

G. Richter, Ultrahigh strength single crystalline nanowhiskers grown by physical vapor deposition, Nano Letters, vol.9, pp.3048-3052, 2009.

G. Rubio, N. Agraït, and S. Vieira, Atomic-Sized Metallic Contacts: Mechanical Properties and Electronic Transport, Physical Review Letters, vol.76, pp.2302-2305, 1996.

T. Shiota, A. I. Mares, A. M. Valkering, T. H. Oosterkamp, and J. M. Van-ruitenbeek, Mechanical properties of Pt monatomic chains, Physical Review B -Condensed Matter and Materials Physics, vol.77, pp.1-5, 2008.

J. Sun, Liquid-like pseudoelasticity of sub-10-nm crystalline silver particles, Nature materials, vol.13, pp.1007-1019, 2014.

C. Untiedt, G. Rubio-bollinger, S. Vieira, S. Vieira, and N. Agraït, Fabrication and characterization of metallic nanowires, Physical Review B, vol.56, pp.2154-2160, 1997.

B. Wu, A. Heidelberg, and J. J. Boland, Mechanical properties of ultrahigh-strength gold nanowires, Nature Materials, vol.4, pp.525-529, 2005.

A. I. Yanson, G. Rubio-bollinger, H. E. Van-den-brom, N. Agraït, and J. M. Van-ruitenbeek, Formation and manipulation of a metallic wire of single gold atoms, Nature, vol.395, pp.783-785, 1998.

Q. Yu, Strong crystal size effect on deformation twinning, Nature, vol.463, pp.335-338, 2010.

V. Zaloj, M. Urbakh, and J. Klafter, Atomic Scale Friction: What can be Deduced from the Response to a Harmonic Drive, Physical Review Letters, vol.81, pp.1227-1230, 1998.

V. Zaloj, M. Urbakh, and J. Klafter, Deducing energy dissipation from rheological response, The Journal of Chemical Physics, vol.110, p.1263, 1999.

Y. Zhu, Size effects on elasticity, yielding, and fracture of silver nanowires: In situ experiments, Physical Review B -Condensed Matter and Materials Physics, vol.85, pp.1-7, 2012.

, Pairwise Frictional Profile between Particles and the Non-Newtonian Rheology of Suspensions

Y. Abdesselam, Rheology of plastisol formulations for coating applications, Polymer Engineering and Science, vol.57, pp.982-988, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01395099

H. A. Barnes, Dilatancy") in Suspensions of Nonaggregating Solid Particles Dispersed in Newtonian Liquids, Journal of Rheology, vol.33, pp.329-366, 1989.

E. G. Barroso, F. M. Duarte, M. Couto, and J. M. Maia, High strain rate rheological characterization of low viscosity fluids, Polymer Testing, vol.29, pp.419-424, 2010.

A. Bouchet, C. Cazeneuve, N. Baghdadli, G. S. Luengo, and C. Drummond, Experimental Study and Modeling of Boundary Lubricant Polyelectrolyte Films, Macromolecules, vol.48, pp.2244-2253, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01145822

B. Briscoe and D. Tabor, The effect of pressure on the frictional properties of polymers, Wear, vol.34, pp.29-38, 1975.

E. Brown and H. M. Jaeger, Shear thickening in concentrated suspensions: phenomenology, mechanisms and relations to jamming. Reports on progress in physics, Physical Society, vol.77, p.46602, 2014.

E. Brown and H. M. Jaeger, Dynamic Jamming Point for Shear Thickening Suspensions, Physical Review Letters, vol.103, p.86001, 2009.

E. Brown and H. M. Jaeger, The role of dilation and confining stresses in shear thickening of dense suspensions, Journal of Rheology, vol.56, pp.875-923, 1978.

C. Clavaud, A. Bérut, B. Metzger, and Y. Forterre, Revealing the frictional transition in shear-thickening suspensions, Proceedings of the National Academy of Sciences, vol.114, pp.5147-5152, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01492671

F. Da-cruz, S. Emam, M. Prochnow, J. Roux, and F. Chevoir, Rheophysics of dense granular materials: Discrete simulation of plane shear flows, Physical Review E, vol.72, p.21309, 2005.
URL : https://hal.archives-ouvertes.fr/hal-01990685

S. Dai, E. Bertevas, F. Qi, and R. I. Tanner, Viscometric functions for noncolloidal sphere suspensions with Newtonian matrices, Journal of Rheology, vol.57, pp.493-510, 2013.

B. V. Derjaguin, Untersuchungen über die Reibung und Adhäsion, IV. Colloid & Polymer Science, vol.69, pp.155-164, 1934.

A. Einstein, On the motion of small particles suspended in liquids at rest required by the molecular-kinetic theory of heat, Annalen der Physik, vol.17, pp.549-560, 1905.

A. Einstein, Berichtigung zu meiner Arbeit:Eine neue Bestimmung der Moleküldimen-sionen, Annalen der Physik, vol.339, pp.591-592, 1911.

A. Fall, Macroscopic Discontinuous Shear Thickening versus Local Shear Jamming in Cornstarch, Physical Review Letters, vol.114, p.98301, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01163683

A. Fall, Macroscopic discontinuous shear thickening versus local shear jamming in cornstarch, Phys. Rev. Lett, vol.114, p.98301, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01163683

A. Feiler, I. Larson, P. Jenkins, and P. Attard, A quantitative study of interaction forces and friction in aqueous colloidal systems, Langmuir, vol.16, pp.10269-10277, 2000.

N. Fernandez, J. Cayer-barrioz, L. Isa, N. D. Spencer, and . Direct, Robust Technique for the Measurement of Friction between Microspheres, Langmuir, vol.31, pp.8809-8817, 2015.

E. Goernitz and H. Zecha, Interactions in PVC-plasticizer dispersions, Langmuir, vol.3, pp.738-741, 1987.

B. Guy, M. Hermes, and W. Poon, Towards a unified description of the rheology of hard-particle suspensions, Phys. Rev. Lett, vol.115, p.88304, 2015.

E. Han, I. R. Peters, and H. M. Jaeger, High-speed ultrasound imaging in dense suspensions reveals impact-activated solidification due to dynamic shear jamming. en, Nature Communications, vol.7, p.12243, 2016.

N. Suspensions,

R. L. Hoffman, Discontinuous and Dilatant Viscosity Behavior in Concentrated Suspensions. I. Observation of a Flow Instability, Transactions of The Society of Rheology, vol.16, pp.155-173, 1957.

J. N. Israelachvili, Intermolecular and surface forces: revised third edition, 2011.

S. Jamali, A. Boromand, N. Wagner, and J. Maia, Microstructure and rheology of soft to rigid shear-thickening colloidal suspensions, Journal of Rheology, vol.59, pp.1377-1395, 2015.

D. P. Kalman, Microstructure and rheology of concentrated suspensions of near hardsphere colloids PhD thesis, 2010.

D. P. Kalman, B. A. Rosen, and N. J. Wagner, Effects of Particle Hardness on Shear Thickening Colloidal Suspension Rheology, AIP Conference Proceedings, vol.1027, pp.1408-1410, 2008.

J. Klein and . Shear, Friction, and Lubrication Forces Between Polymer-Bearing Surfaces, Annual Review of Materials Science, vol.26, pp.581-612, 1996.

J. Klein, Shear of polymer brushes, Colloids and Surfaces A: Physicochemical and Engineering Aspects, vol.86, pp.63-76, 1994.

J. Klein, E. Kumacheva, D. Perahia, D. Mahalu, and S. Warburg, Interfacial sliding of polymer-bearing surfaces, Faraday Discussions, vol.98, pp.173-188, 1994.

I. M. Krieger, Rheology of monodisperse latices, Advances in Colloid and Interface Science, vol.3, pp.111-136, 1972.

M. Labardi and M. Allegrini, Noncontact friction force microscopy based on quartz tuning fork sensors, Applied Physics Letters, vol.89, pp.11-14, 2006.

Y. Lee, E. Wetzel, and N. J. Wagner, The ballistic impact characteristics of Kevlar R woven fabrics impregnated with a colloidal shear thickening fluid, J. Mater. Sci, vol.38, pp.2825-2833, 2003.

S. Leroy, Hydrodynamic interaction between a spherical particle and an elastic surface: A gentle probe for soft thin films, Physical Review Letters, vol.108, pp.1-5, 2012.

A. S. Lim, S. L. Lopatnikov, N. J. Wagner, and J. W. Gillespie, An experimental investigation into the kinematics of a concentrated hard-sphere colloidal suspension during Hopkinson bar evaluation at high stresses, Journal of Non-Newtonian Fluid Mechanics, vol.165, pp.1342-1350, 2010.

N. Lin, Hydrodynamic and contact contributions to shear thickening in colloidal suspensions, Phys. Rev. Lett, vol.115, p.228304, 2015.

H. Lombois-burger, P. Colombet, J. L. Halary, and H. Van-damme, On the frictional contribution to the viscosity of cement and silica pastes in the presence of adsorbing and non adsorbing polymers, Cement and Concrete Research, vol.38, pp.1306-1314, 2008.

B. J. Maranzano and N. J. Wagner, The effects of interparticle interactions and particle size on reversible shear thickening: Hard-sphere colloidal dispersions, Journal of Rheology, vol.45, pp.1205-1222, 2001.

R. Mari, R. Seto, J. F. Morris, and M. M. Denn, Shear thickening, frictionless and frictional rheologies in non-Brownian suspensions, Journal of Rheology, vol.58, pp.1693-1724, 2014.

H. Michiel, Unsteady flow and particle migration in dense, non-Brownian suspensions, J. o. R, vol.60, pp.905-916, 2016.

N. Nakajima and E. R. Harrell, Rheology of poly(vinyl chloride) plastisol for superhigh shear-rate processing. I. en, Journal of Applied Polymer Science, vol.115, pp.3605-3609, 2010.

N. Nakajima and E. Harrell, Rheology of PVC Plastisol at Instability Region and Beyond (Proposal for Super-High Shear-Rate Coating). en, Journal of Elastomers and Plastics, vol.41, pp.277-285, 2009.

I. Peters, S. Majumdar, and H. Jaeger, Direct observation of dynamic shear jamming in dense suspensions, Nature, vol.532, pp.214-217, 2016.

J. Qin, G. Zhang, and X. Shi, Study of a shear thickening fluid: the suspensions of monodisperse polystyrene microspheres in polyethylene glycol, Journal of Dispersion Science and Technology, vol.38, pp.935-942, 2017.

V. Rathee, D. L. Blair, and J. S. Urbach, Localized Stress Fluctuations Drive Shear Thickening in Dense Suspensions, PNAS, vol.114, pp.8740-8745, 2017.

U. Raviv, R. Tadmor, and J. Klein, Shear and Frictional Interactions between Adsorbed Polymer Layers in a Good Solvent, The Journal of Physical Chemistry B, vol.105, pp.8125-8134, 2001.

J. Royer, D. Blair, and S. Hudson, Rheological Signature of Frictional Interactions in Shear Thickening Suspensions, Phys. Rev. Lett, vol.116, p.188301, 2016.

J. E. Sader and S. P. Jarvis, Accurate formulas for interaction force and energy in frequency modulation force spectroscopy, Applied Physics Letters, vol.84, p.1801, 2004.

P. A. Schorr, T. C. Kwan, S. M. Kilbey, E. S. Shaqfeh, and M. Tirrell, Shear forces between tethered polymer chains as a function of compression, sliding velocity, and solvent quality, Macromolecules, vol.36, pp.389-398, 2003.

R. Seto, R. Mari, J. Morris, and M. Denn, Discontinuous shear thickening of frictional hard-sphere suspensions, Phys. Rev. Lett, vol.111, p.218301, 2013.

K. Shooter and D. Tabor, The frictional properties of plastics, Proc. Phys. Soc. Sect. B, vol.65, p.661, 1952.

M. Van-hecke, Soft matter: Running on cornflour. en, Nature, vol.487, pp.174-175, 2012.

A. Vázquez-quesada, R. I. Tanner, and M. Ellero, Shear Thinning of Noncolloidal Suspensions, Physical review letters, vol.117, p.108001, 2016.

R. Villey, Effect of Surface Elasticity on the Rheology of Nanometric Liquids, Physical Review Letters, vol.111, p.215701, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00967566

N. Wagner and J. F. Brady, Shear thickening in colloidal dispersions, Phys. Today, vol.62, pp.27-32, 2009.

S. J. Willey, P. Physics, and E. Branch, Solvation Effects on Dilatancy in Concentrated PVC Plastisols, vol.564, pp.557-564, 1982.

S. J. Willey and C. Macosko, Steady shear rheological behavior of PVC plastisols, J. o. R, vol.22, pp.525-545, 1978.

M. Wyart and M. E. Cates, Discontinuous shear thickening without inertia in dense non-brownian suspensions. en, Physical Review Letters, vol.112, 2014.

M. Wyart and M. Cates, Discontinuous shear thickening without inertia in dense nonBrownian suspensions, Physical review letters, vol.112, p.98302, 2014.

Y. Georget, Mise en oeuvre des plastisols, 1994.

E. Bayart, I. Svetlizky, and J. Fineberg, Slippery but Tough: The Rapid Fracture of Lubricated Frictional Interfaces, Physical Review Letters, vol.116, pp.1-5, 2016.

F. P. Bowden and T. P. Hughes, The Mechanism of Sliding on Ice and Snow, Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, vol.172, pp.280-298, 1939.

S. Cha, Cold welding of gold nanoparticles on mica substrate: Self-adjustment and enhanced diffusion, Scientific Reports, vol.6, p.32951, 2016.

C. Chen, L. Yan, E. S. Kong, .. Zhang, and Y. , Ultrasonic nanowelding of carbon nanotubes to metal electrodes, Nanotechnology, vol.17, pp.2192-2197, 2006.

S. C. Colbeck, The kinetic friction of snow, Journal of Glaciology, vol.34, pp.78-86, 1988.

A. Eichler, Nonlinear damping in mechanical resonators made from carbon nanotubes and graphene, Nature nanotechnology, vol.6, pp.339-342, 2011.

R. Futamura, Partial breaking of the Coulombic ordering of ionic liquids confined in carbon nanopores, Nature Materials, vol.16, pp.1225-1232, 2017.
URL : https://hal.archives-ouvertes.fr/hal-02048141

L. Garcia, L. Jacquot, E. Charlaix, and B. Cross, Nano-mechanics of ionic liquids at dielectric and metallic interfaces, Faraday Discuss, 2017.
URL : https://hal.archives-ouvertes.fr/hal-02001373

L. Garcia, A micro-nano-rheometer for the mechanics of soft matter at interfaces, Review of Scientific Instruments, vol.87, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01581974

A. Goldman, R. Cox, and H. Brenner, Slow viscous motion of a sphere parallel to a plane wall -II Couette flow, Chemical Engineering Science, vol.22, pp.653-660, 1967.

J. Güttinger, Energy-dependent path of dissipation in nanomechanical resonators, Nature Nanotechnology, vol.12, pp.631-636, 2017.

A. M. Kietzig, S. G. Hatzikiriakos, and P. Englezos, Physics of ice friction, Journal of Applied Physics, vol.107, 2010.

S. Kondrat and A. Kornyshev, Superionic state in double-layer capacitors with nanoporous electrodes, Journal of Physics Condensed Matter, vol.23, 2011.

S. Kondrat, P. Wu, R. Qiao, and A. A. Kornyshev, Accelerating charging dynamics in subnanometre pores, Nature Materials, vol.13, pp.387-393, 2014.

S. Leroy and E. Charlaix, Hydrodynamic interactions for the measurement of thin film elastic properties, Journal of Fluid Mechanics, vol.674, pp.389-407, 2011.

S. Leroy, Hydrodynamic interaction between a spherical particle and an elastic surface: A gentle probe for soft thin films, Physical Review Letters, vol.108, pp.1-5, 2012.

W. Lu and C. M. Lieber, Nanoelectronics from the bottom up, Nature Materials, vol.6, pp.841-850, 2007.

Y. Lu, J. Y. Huang, C. Wang, S. Sun, and J. Lou, Cold welding of ultrathin gold nanowires, Nature Nanotechnology, vol.5, pp.218-224, 2010.

T. Mason, J. Bibette, and D. Weitz, Yielding and Flow of Monodisperse Emulsions, Journal of Colloid and Interface Science, vol.179, pp.439-448, 1996.

C. M. Mate, Tribology on the Small Scale: A Bottom Up Approach to Friction, Lubrication, and Wear 1-354, p.9780191712098, 2008.

C. Merlet, On the molecular origin of supercapacitance in nanoporous carbon electrodes, Nature materials, vol.11, pp.306-310, 2012.
URL : https://hal.archives-ouvertes.fr/hal-01153072

M. H. Müser, Meeting the Contact-Mechanics Challenge, Tribology Letters, p.65, 2017.

B. N. Persson, O. Albohr, U. Tartaglino, A. I. Volokitin, and E. Tosatti, On the nature of surface roughness with application to contact mechanics, sealing, rubber friction and adhesion, Journal of Physics Condensed Matter, vol.17, pp.1-62, 2005.

F. Restagno, J. Crassous, É. Charlaix, C. Cottin-bizonne, and M. Monchanin, A new surface forces apparatus for nanorheology, Review of Scientific Instruments, vol.73, p.2292, 2002.

A. Rigato, A. Miyagi, S. Scheuring, and F. Rico, High-frequency microrheology reveals cytoskeleton dynamics in living cells, Nature Physics, vol.13, pp.771-775, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01764684

M. S. Rodrigues, L. Costa, J. Chevrier, and F. Comin, Why do atomic force microscopy force curves still exhibit jump to contact?, Applied Physics Letters, vol.101, p.203105, 2012.
URL : https://hal.archives-ouvertes.fr/hal-01001416

M. P. Singh, R. K. Singh, and S. Chandra, Ionic liquids confined in porous matrices: Physicochemical properties and applications, Progress in Materials Science, vol.64, pp.73-120, 2014.

J. Sun, Liquid-like pseudoelasticity of sub-10-nm crystalline silver particles, Nature materials, vol.13, pp.1007-1019, 2014.

K. J. Van-vliet, S. Tsikata, and S. Suresh, Model experiments for direct visualization of grain boundary deformation in nanocrystalline metals, Applied Physics Letters, vol.83, pp.1441-1443, 2003.

R. Villey, Effect of Surface Elasticity on the Rheology of Nanometric Liquids, Physical Review Letters, vol.111, p.215701, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00967566

A. Vioux and B. Coasne, From Ionogels to Biredox Ionic Liquids: Some Emerging Opportunities for Electrochemical Energy Storage and Conversion Devices, Advanced Energy Materials, vol.7, pp.1-13, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01898335

M. V. Vitorino, S. Carpentier, L. Costa, and M. S. Rodrigues, Force feedback microscopy based on an optical beam deflection scheme, Applied Physics Letters, p.105, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01341195

B. Weber, Molecular probes reveal deviations from Amontons' law in multiasperity frictional contacts, Nature Communications, vol.9, pp.1-7, 2018.

A. Contents, 1 Surface energy of a crystal with a TF wall, p.117

, Physical interpretation and an approximated scheme, p.121

A. , Surface energy of a liquid with a TF wall, p.123

A. , Molecular dynamics of a molten salt in confinement, p.124

J. D. Jackson, Classical Electrodynamics, vol.641, p.9780471431312, 1998.

A. A. Kornyshev and M. A. Vorotyntsev, Analytic expression for the potential energy of a test charge bounded by solid state plasma, Journal of Physics C: Solid State Physics, vol.11, 1978.

A. J. Ladd and L. V. Woodcock, Triple-point coexistence properties of the lennardjones system, Chemical Physics Letters, vol.51, pp.155-159, 1977.

G. D. Mahan, , 2013.

M. J. Nijmeijer, C. Bruin, A. F. Bakker, and J. M. Van-leeuwen, Wetting and drying of an inert wall by a fluid in a molecular-dynamics simulation, Physical Review A, vol.42, pp.6052-6059, 1990.

M. J. Nijmeijer and J. M. Van-&-leeuwen, Microscopic expressions for the surface and line tension, Journal of Physics A: General Physics, vol.23, pp.4211-4235, 1990.

E. G. Noya, C. Vega, and E. De-miguel, Determination of the melting point of hard spheres from direct coexistence simulation methods, Journal of Chemical Physics, vol.128, 2008.

M. Tosi and F. Fumi, Ionic sizes and born repulsive parameters in the NaCl-type alkali halidesâII, Journal of Physics and Chemistry of Solids, vol.25, pp.45-52, 1964.

C. Valeriani, E. Sanz, and D. Frenkel, Rate of homogeneous crystal nucleation in molten NaCl, Journal of Chemical Physics, vol.122, 2005.

1. Boundary,