D. H. Everett, Definitions, Terminology and Symbols in Colloid and Surface Chemistry, Pure Applied Chemistry, vol.31, issue.4, pp.579-638, 1972.

R. J. Hunter, Introduction to modern colloid science, 1993.

S. Laschat, A. Baro, N. Steinke, F. Giesselmann, C. Hägele et al., Discotic Liquid Crystals: From Tailor-Made Synthesis to Plastic Electronics, Angewandte Chemie International Edition, vol.46, issue.26, pp.4832-4887, 2007.

F. Meseguer, Colloidal crystals as photonic crystals, Colloids and Surfaces A: Physicochemical and Engineering Aspects, pp.270-271, 2005.

B. V. Derjaguin and L. Landau, Theory of the stability of strongly charged lyophobic sols and of the adhesion of strongly charged particles in solutions of electrolytes

, Acta Physico Chim USSR, vol.14, pp.633-662, 1941.

E. J. Verwey, J. Th, and G. Overbeek, Theory of the Stability of Lyophobic Colloids, 1948.

J. Li, B. Cabane, M. Sztucki, J. Gummel, and L. Goehring, Drying Dip-Coated Colloidal Films, Langmuir, vol.28, issue.1, pp.200-208, 2012.

B. Cabane, J. Li, F. Artzner, R. Botet, C. Labbez et al., Hiding in Plain View: Colloidal Self-Assembly from Polydisperse Populations, Physical Review Letters, vol.116, issue.20, p.208001, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01343403

P. Kiatkirakajorn, Morphological instabilities in drying colloids, 2018.

J. D. Bernal and I. Fankuchen, X-ray and crystallographic studies of plant virus preparations, Journal of General Physiology, vol.25, issue.1, pp.111-146, 1941.

C. Robley, K. M. Williams, and . Smith, A Crystallizable Insect Virus, Nature, vol.179, issue.4551, pp.119-120, 1957.

I. Langmuir, The Role of Attractive and Repulsive Forces in the Formation of Tactoids, Thixotropic Gels, Protein Crystals and Coacervates, Journal of Chemical Physics, vol.6, issue.12, pp.873-896, 1938.

J. B. Jones, J. V. Sanders, and E. R. Segnit, Structure of Opal, Nature, vol.204, issue.4962, pp.990-991, 1964.

P. J. Darragh, A. J. Gaskin, and J. V. Sanders, Opals. Scientific American, vol.234, issue.4, pp.84-95, 1976.

R. K. Iler, The Chemistry of Silica, 1979.

B. J. Alder and T. E. Wainwright, Phase Transition for a Hard Sphere System, Journal of Chemical Physics, vol.27, issue.5, pp.1208-1209, 1957.

W. W. Wood and J. D. Jacobson, Preliminary Results from a Recalculation of the Monte Carlo Equation of State of Hard Spheres, Journal of Chemical Physics, vol.27, issue.5, pp.1207-1208, 1957.

P. N. Pusey and W. Van-megen, Phase behaviour of concentrated suspensions of nearly hard colloidal spheres, Nature, vol.320, issue.6060, pp.340-342, 1986.

, Pawel Pieranski. Colloidal crystals. Contemporary Physics, vol.24, issue.1, pp.25-73, 1983.

J. G. Kirkwood, E. K. Maun, and B. J. Alder, Radial Distribution Functions and the Equation of State of a Fluid Composed of Rigid Spherical Molecules, Journal of Chemical Physics, vol.18, issue.8, pp.1040-1047, 1950.

D. Frenkel, Entropy-driven phase transitions, Physica A: Statistical Mechanics and its Applications, vol.263, issue.1, pp.26-38, 1999.

P. N. Pusey, W. Van-megen, P. Bartlett, B. J. Ackerson, J. G. Rarity et al.,

. Underwood, Structure of crystals of hard colloidal spheres, Physical Review Letters, vol.63, pp.2753-2756, 1989.

W. G. Kranendonk and D. Frenkel, Computer simulation of solid-liquid coexistence in binary hard-sphere mixtures, Journal of Physics: Condensed Matter, vol.1, issue.41, p.7735, 1989.

W. G. Kranendonk and D. Frenkel, Computer simulation of solid-liquid coexistence in binary hard sphere mixtures, Molecular Physics, vol.72, issue.3, pp.679-697, 1991.

M. Dijkstra, R. René-van-roij, and . Evans, Phase diagram of highly asymmetric binary hard-sphere mixtures, Physical Review E, vol.59, issue.5, pp.5744-5771, 1999.

L. Filion, M. Hermes, R. Ni, E. C. Vermolen, A. Kuijk et al., Self-assembly of a colloidal interstitial solid with tunable sublattice doping, Physical Review Letters, vol.107, p.168302, 2011.

M. J. Murray and J. V. Sanders, Close-packed structures of spheres of two different sizes II. The packing densities of likely arrangements, Philosophy Magazine A, vol.42, issue.6, pp.721-740, 1980.

L. Filion and M. Dijkstra, Prediction of binary hard-sphere crystal structures, Physical Review E, vol.79, issue.4, p.46714, 2009.

M. D. Eldridge, P. A. Madden, and D. Frenkel, Entropy-driven formation of a superlattice in a hard-sphere binary mixture, Nature, vol.365, issue.6441, pp.35-37, 1993.

M. D. Eldridge, P. A. Madden, P. N. Pusey, and P. Bartlett, Binary hard-sphere mixtures: a comparison between computer simulation and experiment, Molecular Physics, vol.84, issue.2, pp.395-420, 1995.

P. Bartlett, R. H. Ottewill, and P. N. Pusey, Superlattice formation in binary mixtures of hard-sphere colloids, Physical Review Letters, vol.68, issue.25, pp.3801-3804, 1992.

A. Hynninen, J. H. Thijssen, C. M. Esther, and . Vermolen, Marjolein Dijkstra, and Alfons van Blaaderen. Self-assembly route for photonic crystals with a bandgap in the visible region, Nature Materials, vol.6, issue.3, pp.202-205, 2007.

N. Schaertl, T. Palberg, and E. Bartsch, Formation of laves phases in repulsive and attractive hard sphere suspensions, 2017.

A. Hynninen, L. Filion, and M. Dijkstra, Stability of LS and LS2 crystal structures in binary mixtures of hard and charged spheres, Journal of Chemical Physics, vol.131, issue.6, p.64902, 2009.

M. D. Eldridge, P. A. Madden, and D. Frenkel, Entropy-driven formation of a superlattice in a hard-sphere binary mixture, Nature, vol.365, issue.6441, pp.35-37, 1993.

M. Fasolo and P. Sollich, Fractionation effects in phase equilibria of polydisperse hard-sphere colloids, Physical Review E, vol.70, issue.4, p.41410, 2004.

E. B. Sirota, H. D. Ou-yang, S. K. Sinha, P. M. Chaikin, J. D. Axe et al., Complete phase diagram of a charged colloidal system: A synchro-tron x-ray scattering study, Physical Review Letters, vol.62, issue.13, pp.1524-1527, 1989.

J. Evert, D. Meijer, and . Frenkel, Melting line of Yukawa system by computer simulation, Journal of Chemical Physics, vol.94, issue.3, pp.2269-2271, 1991.

N. J. Lorenz, H. J. Schöpe, H. Reiber, T. Palberg, P. Wette et al., Phase behaviour of deionized binary mixtures of charged colloidal spheres, Journal of Physics: Condensed Matter, vol.21, issue.46, p.464116, 2009.

E. Mirjam, C. G. Leunissen, A. Christova, C. P. Hynninen, A. I. Royall et al., Marjolein Dijkstra, René van Roij, and Alfons van Blaaderen. Ionic colloidal crystals of oppositely charged particles, Nature, vol.437, p.235, 2005.

M. Bier, M. René-van-roij, and . Dijkstra, Phase diagrams of binary mixtures of oppositely charged colloids, Journal of Chemical Physics, vol.133, issue.12, p.124501, 2010.

M. Hasaka, H. Nakashima, and K. Oki, Structure of the laves phase observed in polystyrene latexes, Transactions of the Japan Institute of Metals, vol.25, issue.2, pp.65-72, 1984.

G. William, F. H. Hoover, and . Ree, Melting Transition and Communal Entropy for Hard Spheres, Journal of Chemical Physics, vol.49, issue.8, pp.3609-3617, 1968.

. O. Mark, K. Robbins, G. S. Kremer, and . Grest, Phase diagram and dynamics of Yukawa systems, Journal of Chemical Physics, vol.88, issue.5, pp.3286-3312, 1988.

P. N. Pusey, The effect of polydispersity on the crystallization of hard spherical colloids, Journal de Physique France, vol.48, issue.5, pp.709-712, 1987.
URL : https://hal.archives-ouvertes.fr/jpa-00210489

P. Bartlett, Fractionated crystallization in a polydisperse mixture of hard spheres, Journal of Chemical Physics, vol.109, issue.24, 1998.

A. David, P. G. Kofke, and . Bolhuis, Freezing of polydisperse hard spheres, Physical Review E, vol.59, issue.1, pp.618-622, 1999.

P. Sollich, Predicting phase equilibria in polydisperse systems, Journal of Physics: Condensed Matter, vol.14, issue.3, p.79, 2002.

L. Berthier and G. Biroli, Theoretical perspective on the glass transition and amorphous materials, Review of Modern Physics, vol.83, issue.2, pp.587-645, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00608672

T. Palberg, P. Wette, and D. M. Herlach, Equilibrium fluid-crystal interfacial free energy of bcc-crystallizing aqueous suspensions of polydisperse charged spheres, Physical Review E, vol.93, issue.2, p.22601, 2016.

P. N. Pusey and W. Van-megen, Observation of a glass transition in suspensions of spherical colloidal particles, Physical Review Letters, vol.59, issue.18, pp.2083-2086, 1987.

D. Frenkel and B. Smit, Understanding Molecular Simulation, 2002.

L. A. Fernández, V. Mart\'?n-mayor, and P. Verrocchio, Phase Diagram of a Polydisperse Soft-Spheres Model for Liquids and Colloids, Physical Review Letters, vol.98, issue.8, p.85702, 2007.

S. Tomás, G. Grigera, and . Parisi, Fast Monte Carlo algorithm for supercooled soft spheres, Physical Review E, vol.63, issue.4, p.45102, 2001.

G. Bussi, D. Donadio, and M. Parrinello, Canonical sampling through velocity rescaling, Journal of Chemical Physics, vol.126, issue.1, p.14101, 2007.

B. Hess, C. Kutzner, D. Van-der, E. Spoel, and . Lindahl, GROMACS 4: Algorithms for Highly Efficient, Load-Balanced, and Scalable Molecular Simulation, Journal of Chemical Theory and Computation, vol.4, issue.3, pp.435-447, 2008.

J. Christopher, J. D. Fennell, and . Gezelter, Is the Ewald summation still necessary? Pairwise alternatives to the accepted standard for long-range electrostatics, Journal of Chemical Physics, vol.124, p.4104, 2006.

D. Wolf, P. Keblinski, S. R. Phillpot, and J. Eggebrecht, Exact method for the simulation of Coulombic systems by spherically truncated, pairwise r-1 summation, Journal of Chemical Physics, vol.110, issue.17, pp.8254-8282, 1999.

D. J. Auerbach, W. Paul, A. F. Bakker, C. Lutz, W. E. Rudge et al.,

A. , A special purpose parallel computer for molecular dynamics: motivation, design, implementation, and application, Journal of Physical Chemistry, vol.91, issue.19, pp.4881-4890, 1987.

M. Turesson, B. Jönsson, and C. Labbez, Coarse-Graining Intermolecular Interactions in Dispersions of Highly Charged Colloids, Langmuir, vol.28, issue.11, pp.4926-4930, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00694510

A. Thuresson, M. Ullner, and M. Turesson, Interaction and Aggregation of Charged Platelets in Electrolyte Solutions: A Coarse-Graining Approach, Journal of Physical Chemistry B, vol.118, issue.26, pp.7405-7413, 2014.

E. Allahyarov and H. Löwen, Nonadditivity in the effective interactions of binary charged colloidal suspensions, Journal of Physics: Condensed Matter, vol.21, issue.42, p.424117, 2009.

D. Reith, M. Pütz, and F. Müller-plathe, Deriving effective mesoscale potentials from atomistic simulations, Journal Computational Chemistry, vol.24, issue.13, pp.1624-1636, 2003.

F. Müller-plathe, Coarse-graining in polymer simulation: From the atomistic to the mesoscopic scale and back, ChemPhysChem, vol.3, issue.9, pp.754-769, 2002.

S. Alexander, P. M. Chaikin, P. Grant, G. J. Morales, P. Pincus et al., Charge renormalization, osmotic pressure, and bulk modulus of colloidal crystals: Theory, Journal of Chemical Physics, vol.80, issue.11, pp.5776-5781, 1984.

E. Trizac and Y. Levin, Renormalized jellium model for charge-stabilized colloidal suspensions, Physical Review E, vol.69, p.31403, 2004.
URL : https://hal.archives-ouvertes.fr/hal-00077491

J. Israelachvili, Intermolecular and Surface Forces, 1991.

W. Press, S. Teukolsky, W. Vetterling, and B. Flannery, Numerical Recipes in Fortran: The Art od Scientific Computing, vol.1, 1992.

P. J. Steinhardt, D. R. Nelson, and M. Ronchetti, Bond-orientational order in liquids and glasses, Physical Review B, vol.28, issue.2, pp.784-805, 1983.

S. Auer and D. Frenkel, Numerical prediction of absolute crystallization rates in hard-sphere colloids, Journal of Chemical Physics, vol.120, issue.6, pp.3015-3029, 2004.

J. Mattsson, H. M. Wyss, A. Fernandez-nieves, K. Miyazaki, Z. Hu et al., Soft colloids make strong glasses, Nature, vol.462, pp.83-86, 2009.

M. Turesson, T. , and J. Forsman, Interaction between charged surfaces immersed in a polyelectrolyte solution, Langmuir, vol.23, pp.9555-9558, 2007.

J. Peter, D. A. Lu, and . Weitz, Colloidal particles: Crystals, glasses, and gels, Annual Review of Condensed Matter Physics, vol.4, pp.217-333, 2013.

P. Sinha, I. Szilagyi, F. Javier-montes-ruiz-cabello, P. Maroni, and M. Borkovec, Attractive forces between charged colloidal particles induced by multivalent ions revealed by confronting aggregation and direct force measurements, Journal of Physical Chemistry Letters, vol.4, issue.4, p.26281881, 2013.

T. Kawasaki and H. Tanaka, Formation of a crystal nucleus from liquid, Proceedings of the National Academy of Sciences, vol.107, issue.32, pp.14036-14041, 2010.

T. Palberg, Crystallization kinetics of colloidal model suspensions: Recent achievements and new perspectives, Journal of Physics: Condensed Matter, vol.26, issue.33, p.333101, 2014.

G. Peter, D. A. Bolhuis, and . Kofke, Monte Carlo study of freezing of polydisperse hard spheres, Physical Review E, vol.54, issue.1, pp.634-643, 1996.

D. Frenkel and R. Eppenga, Monte carlo study of the isotropic-nematic transition in a fluid of thin hard disks, Physical Review Letters, vol.49, issue.15, pp.1089-1092, 1982.

D. Frenkel, A. Ard, and . Louis, Phase separation in binary hard-core mixtures: An exact result, Physical Review Letters, vol.68, issue.22, pp.3363-3365, 1992.

H. N. Lekkerkerker and G. J. Vroege, Liquid crystal phase transitions in suspensions of mineral colloids: new life from old roots, Philosophical Transations of the Royal Society A, vol.371, p.263, 1988.

L. Guldbrand, B. Jönsson, H. Wennerström, and P. Linse, Electric double layer forces. A Monte Carlo study, Journal of Chemical Physics, vol.80, pp.2221-2228, 1984.

R. Kjellander and S. Marc?lja, Correlation and image charge effects in electric double layers, Chemical Physics Letters, vol.112, issue.1, pp.49-53, 1984.

J. Wu, D. Bratko, and J. M. Prausnitz, Interaction between likecharged colloidal spheres in electrolyte solutions, Proceedings of the National Academy of Sciences, vol.95, issue.26, pp.15169-15172, 1998.

H. Löwen, P. A. Madden, and J. Hansen, Ab initio description of counterion screening in colloidal suspensions, Physical Review Letters, vol.68, issue.7, pp.1081-1084, 1992.

M. Grace, S. Kepler, and . Fraden, Attractive potential between confined colloids at low ionic strength, Physical Review Letters, vol.73, issue.2, pp.356-359, 1994.

A. E. Larsen and D. G. Grier, Like-charge attractions in metastable colloidal crystallites, Nature, vol.385, issue.6613, pp.230-233, 1997.

A. Michael, S. L. Bevan, and . Eichmann, Optical microscopy measurements of kt-scale colloidal interactions, Current Opinion in Colloid & Interface Science, vol.16, issue.2, pp.149-157, 2011.

J. Baumgartl, J. L. Arauz-lara, and C. Bechinger, Like-charge attraction in confinement: myth or truth?, Soft Matter, vol.2, issue.8, pp.631-635, 2006.

A. A. Louis, Beware of density dependent pair potentials, Journal of Physics: Condensed Matter, vol.14, issue.40, p.9187, 2002.

B. Beresford, -. Smith, and D. Y. Chan, Electrical double-layer interactions in concentrated colloidal systems, Faraday Discussions of the Chemical Society, vol.76, issue.0, pp.65-75, 1983.

R. Castañeda-priego, V. Lobaskin, J. C. Mixteco-sánchez, L. F. Rojas-ochoa, and P. Linse, On the calculation of the structure of charge-stabilized colloidal dispersions using density-dependent potentials, Journal of Physics: Condensed Matter, vol.24, issue.6, p.65102, 2012.

Y. Hallez, J. Diatta, and M. Meireles, Quantitative Assessment of the Accuracy of the Poisson-Boltzmann Cell Model for Salty Suspensions. Langmuir, vol.30, pp.6721-6729, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01250376

B. A. Trung-dac-nguyen, N. A. Schultz, and S. C. Kotov,

. Glotzer, Generic, phenomenological, on-the-fly renormalized repulsion model for self-limited organization of terminal supraparticle assemblies, Proceedings of the National Academy of Sciences, vol.112, issue.25, pp.3161-3168, 2015.

P. A. Bonnaud, C. Labbez, R. Miura, A. Suzuki, N. Miyamoto et al., Interaction grand potential between calcium-silicate-hydrate nanoparticles at the molecular level, Nanoscale, vol.8, issue.7, pp.4160-4172, 2016.

D. Van-der, E. Spoel, B. Lindahl, G. Hess, A. E. Groenhof et al., Gromacs: Fast, flexible, and free, Journal of Computational Chemistry, vol.26, issue.16, pp.1701-1718, 2005.

V. Ballenegger, A. Arnold, and J. J. Cerdà, Simulations of non-neutral slab systems with long-range electrostatic interactions in two-dimensional periodic boundary conditions, Journal of Chemical Physics, vol.131, pp.94107-094107, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00419925

V. Ballenegger, Communication: On the origin of the surface term in the ewald formula, Journal of Chemical Physics, vol.140, issue.16, p.161102, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01275199

P. Sloth and T. S. Sørensen, Monte carlo calculations of chemical potentials in ionic fluids by application of widom's formula: Correction for finite-system effects, Chemical Physics Letters, vol.173, issue.1, pp.51-56, 1990.

G. S. Manning, Limiting Laws and Counterion Condensation in Polyelectrolyte Solutions I. Colligative Properties, Journal of Chemical Physics, vol.51, pp.924-933, 1969.

E. Trizac, L. Bocquet, M. Aubouy, and H. H. Von-grünberg, Alexander's Prescription for Colloidal Charge Renormalization, Langmuir, vol.19, issue.9, pp.4027-4033, 2003.

A. Torres, G. Téllez, and R. Van-roij, The polydisperse cell model: Nonlinear screening and charge renormalization in colloidal mixtures, Journal of Chemical Physics, vol.128, issue.15, p.154906, 2008.

R. Bruno-d'aguanno and . Klein, Structural effects of polydispersity in charged colloidal dispersions, Journal of the Chemical Society: Faraday Transactions, vol.87, issue.3, pp.379-390, 1991.

E. V. Shevchenko, D. V. Talapin, N. A. Kotov, C. B. Stephen-o'brien, and . Murray, Structural diversity in binary nanoparticle superlattices, Nature, vol.439, issue.7072, pp.55-59, 2006.

H. Wiel, B. D. Evers, L. Nijs, S. Filion, M. Castillo et al., Entropy-Driven Formation of Binary SemiconductorNanocrystal Superlattices, Nano Letters, vol.10, issue.10, pp.4235-4241, 2010.

S. Auer and D. Frenkel, Suppression of crystal nucleation in polydisperse colloids due to increase of the surface free energy, Nature, vol.413, issue.6857, pp.711-713, 2001.

N. Marjolein, A. Van-der-linden, M. Van-blaaderen, and . Dijkstra, Effect of size polydispersity on the crystal-fluid and crystal-glass transition in hard-core repulsive Yukawa systems, Journal of Chemical Physics, vol.138, issue.11, p.114903, 2013.

M. Dijkstra, D. Frenkel, and J. Hansen, Phase separation in binary hard-core mixtures, Journal of Chemical Physics, vol.101, issue.4, pp.3179-3189, 1994.

D. V. Byelov, M. C. Mourad, I. Snigireva, A. Snigirev, A. V. Petukhov et al., Experimental Observation of Fractionated Crystallization in Polydisperse Platelike Colloids, Langmuir, vol.26, issue.10, pp.6898-6901, 2010.

A. Esztermann and H. Löwen, Colloidal Brazil-nut effect in sediments of binary charged suspensions, Europhysics Letters, vol.68, issue.1, p.120, 2004.

D. Noguera-marín, C. L. Moraila-martínez, M. A. Cabrerizo-vílchez, and M. A. Rodríguez-valverde, Particle Segregation at Contact Lines of Evaporating Colloidal Drops: Influence of the Substrate Wettability and Particle Charge-Mass Ratio, Langmuir, vol.31, issue.24, pp.6632-6638, 2015.

A. Fortini, I. Martín-fabiani, J. Haye, P. Dugas, M. Lansalot et al., Dynamic Stratification in Drying Films of Colloidal Mixtures, Physical Review Letters, vol.116, issue.11, p.118301, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01716108

J. Zhou, Y. Jiang, and M. Doi, Cross Interaction Drives Stratification in Drying Film of Binary Colloidal Mixtures, Physical Review Letters, vol.118, issue.10, p.108002, 2017.

D. G. Aarts, Capillary Length in a Fluid-Fluid Demixed Colloid-Polymer Mixture, Journal of Physical Chemistry B, vol.109, issue.15, pp.7407-7411, 2005.

M. Dijkstra, R. René-van-roij, and . Evans, Phase Behavior and Structure of Binary Hard-Sphere Mixtures, Physical Review Letters, vol.81, issue.11, pp.2268-2271, 1998.

O. Zvyagolskaya, A. J. Archer, and C. Bechinger, Criticality and phase separation in a two-dimensional binary colloidal fluid induced by the solvent critical behavior, Europhysics Letters, vol.96, issue.2, p.28005, 2011.

J. L. Barrat and J. P. Hansen, On the stability of polydisperse colloidal crystals, Journal de Physique France, vol.47, issue.9, pp.1547-1553, 1986.
URL : https://hal.archives-ouvertes.fr/jpa-00210354

P. N. Pusey, E. Zaccarelli, C. Valeriani, E. Sanz, C. K. Wilson et al.,

. Cates, Hard spheres: Crystallization and glass formation, Philosophical Transactions of the Royal Society A, vol.367, pp.4993-5011, 1909.

T. Palberg, E. Bartsch, R. Beyer, M. Hofmann, N. Lorenz et al., To make a glass-avoid the crystal, Journal of Statistical Mechanics, issue.7, p.74007, 2016.

L. Berthier, P. Charbonneau, D. Coslovich, A. Ninarello, M. Ozawa et al., Configurational entropy measurements in extremely supercooled liquids that break the glass ceiling, Proceedings of the National Academy of Sciences, vol.114, issue.43, pp.11356-11361, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01630755

M. Fushiki, Molecular-dynamics simulations for charged colloidal dispersions, Journal of Chemical Physics, vol.97, issue.9, pp.6700-6713, 1992.

J. Dobnikar, Y. Chen, R. Rzehak, and H. H. Von-grünberg, Many-body interactions and the melting of colloidal crystals, Journal of Chemical Physics, vol.119, issue.9, pp.4971-4985, 2003.

B. Beresford, -. Smith, D. Y. Chan, and D. Mitchell, The electrostatic interaction in colloidal systems with low added electrolyte, Journal of Colloid and Interface Science, vol.105, issue.1, pp.216-234, 1985.

M. Brunner, C. Bechinger, W. Strepp, V. Lobaskin, and H. H. Von-grünberg,

, Density-dependent pair interactions in 2D, Europhysics Letters, vol.58, issue.6, p.926, 2002.

R. A. Marcus, Calculation of Thermodynamic Properties of Polyelectrolytes, Journal of Chemical Physics, vol.23, issue.6, pp.1057-1068, 1955.

J. Marcos-falcón-gonzález and R. Castañeda-priego, Renormalized jellium mean-field approximation for binary mixtures of charged colloids, Physical Review E, vol.83, issue.4, p.41401, 2011.

M. Soria, C. E. Álvarez, and E. Trizac, Renormalized jellium model for colloidal mixtures, Physical Review E, vol.94, issue.4, p.42609, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01407876

R. J. Hunter, Foundations of Colloid Science, 1995.

T. Hiemstra and W. H. Van-riemsdijk, A Surface Structural Approach to Ion Adsorption: The Charge Distribution (CD) Model, Journal of Colloid and Interface Science, vol.179, issue.2, pp.488-508, 1996.

M. Borkovec, Origin of 1-pK and 2-pK models for ionizable water-solid interfaces, Langmuir, vol.13, pp.2608-2613, 1997.

J. Lyklema, Fundamentals of Interface and Colloid Science-Vol IV, 2005.

L. F. Rojas-ochoa, R. Castañeda-priego, V. Lobaskin, A. Stradner, F. Scheffold et al., Density Dependent Interactions and Structure of Charged Colloidal Dispersions in the Weak Screening Regime, Phys. Rev. Lett, vol.100, issue.17, p.178304, 2008.

F. Smallenburg, N. Boon, M. Kater, M. Dijkstra, and R. Van-roij, Phase diagrams of colloidal spheres with a constant zeta-potential, Journal of Chemical Physics, vol.134, issue.7, p.74505, 2011.

P. Wette, H. J. Schöpe, and T. Palberg, Comparison of colloidal effective charges from different experiments, Journal of Chemical Physics, vol.116, issue.24, pp.10981-10988, 2002.

V. Lobaskin, B. Dünweg, M. Medebach, T. Palberg, and C. Holm, Electrophoresis of colloidal dispersions in low-salt regime, Physical Review Letters, vol.98, p.176105, 2007.

J. W. Merrill, K. Sunil, E. R. Sainis, and . Dufresne, Many-Body Electrostatic Forces between Colloidal Particles at Vanishing Ionic Strength, Physical Review Letters, vol.103, issue.13, p.138301, 2009.

T. Gisler, S. F. Schulz, M. Borkovec, H. Sticher, P. Schurtenberger et al., Understanding colloidal charge renormalization from surface chemistry: Experiment and theory, Journal of Chemical Physics, vol.101, issue.11, pp.9924-9936, 1994.

H. , Chemical Charge Regulation and Charge Renormalization in Concentrated Colloidal Suspensions, Journal of Colloid and Interface Science, vol.219, issue.2, pp.339-344, 1999.

M. Heinen, T. Palberg, and H. Löwen, Coupling between bulk-and surface chemistry in suspensions of charged colloids, Journal of Chemical Physics, vol.140, issue.12, p.124904, 2014.

E. S. Reiner and C. J. Radke, Electrostatic interactions in colloidal suspensions: Tests of pairwise additivity, AIChE Journal, vol.37, issue.6, pp.805-824, 1991.

H. Löwen, Charged rodlike colloidal suspensions: An ab initio approach, Journal of Chemical Physics, vol.100, issue.9, pp.6738-6749, 1994.

L. Bocquet, E. Trizac, and M. Aubouy, Effective charge saturation in colloidal suspensions, Journal of Chemical Physics, vol.117, issue.17, pp.8138-8152, 2002.

L. Belloni, Colloidal Interactions. Journal of Physics: Condensed Matter, vol.12, pp.549-587, 2000.

J. Dobnikar, R. Castañeda-priego, H. H. Von-grünberg, and E. Trizac, Testing the relevance of effective interaction potentials between highly-charged colloids in suspension, New Journal of Physics, vol.8, issue.11, p.277, 2006.
URL : https://hal.archives-ouvertes.fr/hal-00115710

Y. Hallez and M. Meireles, Fast, Robust Evaluation of the Equation of State of Suspensions of Charge-Stabilized Colloidal Spheres, Langmuir, vol.33, issue.38, pp.10051-10060, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01635453

B. Beresford-smith, Some Aspects of Strongly Interacting Colloidal Interactions, 1985.

N. Kallay, T. Preo?anin, and S. ?alac, Standard States and Activity Coefficients of Interfacial Species, Langmuir, vol.20, issue.7, pp.2986-2988, 2004.

M. A. Brown, G. V. Bossa, and S. , Emergence of a Stern Layer from the Incorporation of Hydration Interactions into the Gouy-Chapman Model of the Electrical Double Layer, Langmuir, vol.31, issue.42, pp.11477-11483, 2015.

J. Walker, Halliday & Resnick Fundamentals of Physics, 2014.

P. M. Dove and C. M. Craven, Surface charge density on silica in alkali and alkaline earth chloride electrolyte solutions, Geochim Cosmochim Acta, vol.69, pp.4963-4970, 2005.

J. Li, M. Turesson, C. A. Haglund, B. Cabane, and M. Skepö, Equation of state of PEG/PEO in good solvent. Comparison between a one-parameter EOS and experiments, Polymer, vol.80, pp.205-213, 2015.

L. Goehring, J. Li, and P. Kiatkirakajorn, Drying paint: From micro-scale dynamics to mechanical instabilities, Philosophical Transactions of the Royal Society A, vol.375, p.20160161, 2017.

Z. Abbas, C. Labbez, S. Nordholm, and E. Ahlberg, Size-dependent surface charging of nanoparticles, Journal of Physical Chemistry C, vol.112, pp.5715-5723, 2008.
URL : https://hal.archives-ouvertes.fr/hal-00402990

M. Lund and B. Jönsson, On the Charge Regulation of Proteins, Biochemistry, vol.44, issue.15, pp.5722-5727, 2005.

J. Sidney, R. De-carvalho, A. G. Metzler, and . Cherstvy, Critical adsorption of polyelectrolytes onto planar and convex highly charged surfaces: The nonlinear Poisson-Boltzmann approach, New Journal of Physics, vol.18, issue.8, p.83037, 2016.

N. Garbow, M. Evers, T. Palberg, and T. Okubo, On the electrophoretic mobility of isolated colloidal spheres, Journal of Physics: Condensed Matter, vol.16, issue.23, p.3835, 2004.

F. Strubbe, F. Beunis, and K. Neyts, Determination of the effective charge of individual colloidal particles, Journal of Colloid and Interface Science, vol.301, issue.1, pp.302-309, 2006.

I. A. Shkel, O. V. Tsodikov, and M. Thomas-record, Complete Asymptotic Solution of Cylindrical and Spherical Poisson-Boltzmann Equations at Experimental Salt Concentrations, Journal of Physical Chemistry B, vol.104, issue.21, pp.5161-5170, 2000.

M. Aubouy, E. Trizac, and L. Bocquet, Effective charge versus bare charge: An analytical estimate for colloids in the infinite dilution limit, Journal of Physics A, vol.36, issue.22, p.5835, 2003.

S. Pianegonda, E. Trizac, and Y. Levin, The renormalized jellium model for spherical and cylindrical colloids, Journal of Chemical Physics, vol.126, issue.1, p.14702, 2007.
URL : https://hal.archives-ouvertes.fr/hal-00127806

L. Belloni, Ionic condensation and charge renormalization in colloidal suspensions, Colloids and Surfaces A: Physicochemical and Engineering Aspects, vol.140, issue.1-3, pp.227-243, 1998.

R. D. Groot, On the equation of state of charged colloidal systems, Journal of Chemical Physics, vol.94, issue.7, pp.5083-5089, 1991.

J. Mark, M. L. Stevens, M. O. Falk, and . Robbins, Interactions between charged spherical macroions, Journal of Chemical Physics, vol.104, issue.13, pp.5209-5219, 1996.

A. R. Denton, Poisson-Boltzmann theory of charged colloids: Limits of the cell model for salty suspensions, J. Phys.: Condens. Matter, vol.22, issue.36, p.364108, 2010.

N. Boon, G. I. Guerrero-garcía, R. Van-roij, M. Olvera-de-la, and C. , Effective charges and virial pressure of concentrated macroion solutions, Proceedings of the National Academy of Sciences, vol.112, issue.30, pp.9242-9246, 2015.

M. Kobayashi, F. Juillerat, P. Galletto, P. Bowen, and M. Borkovec, Aggregation and charging of colloidal silica particles: Effect of particle size, Langmuir, vol.21, issue.13, pp.5761-5769, 2005.

D. Gazzillo and G. Pastore, Equation of state for symmetric non-additive hardsphere fluids: An approximate analytic expression and new Monte Carlo results, Chemical Physics Letters, vol.159, issue.4, pp.388-392, 1989.

W. G. Kranendonk and D. Frenkel, Thermodynamic properties of binary hard sphere mixtures, Molecular Physics, vol.72, issue.3, pp.715-733, 1991.

D. Frenkel, J. C. Anthony, and . Ladd, New Monte Carlo method to compute the free energy of arbitrary solids. Application to the fcc and hcp phases of hard spheres, Journal of Chemical Physics, vol.81, issue.7, pp.3188-3193, 1984.

L. Onsager, The effects of shape on the interaction of colloidal particles, Annals of the New York Academy of Sciences, vol.51, issue.4, pp.627-659, 1949.

J. Bruce and . Ackerson, When order is disordered, Nature, vol.365, issue.6441, pp.11-12, 1993.

A. David, E. D. Kofke, and . Glandt, Monte Carlo simulation of multicomponent equilibria in a semigrand canonical ensemble, Molecular Physics, vol.64, issue.6, pp.1105-1131, 1988.

A. David, E. D. Kofke, and . Glandt, Infinitely polydisperse fluids, Journal of Chemical Physics, vol.90, issue.1, pp.439-447, 1989.

P. Bartlett and P. B. Warren, Reentrant Melting in Polydispersed Hard Spheres, Physical Review Letters, vol.82, issue.9, pp.1979-1982, 1999.

M. Fasolo and P. Sollich, Equilibrium Phase Behavior of Polydisperse Hard Spheres, Physical Review Letters, vol.91, issue.6, p.68301, 2003.

P. Bartlett, The effect of polydispersity on colloidal phase transitions, Trends in Colloid and Interface Science XIV, Progress in Colloid and Polymer Science, pp.137-140, 2000.

P. Sollich and N. B. Wilding, Crystalline Phases of Polydisperse Spheres, Physical Review Letters, vol.104, issue.11, p.118302, 2010.

N. B. Wilding and P. Sollich, Phase behavior of polydisperse spheres: Simulation strategies and an application to the freezing transition, Journal of Chemical Physics, vol.133, issue.22, p.224102, 2010.

L. Filion, M. Hermes, R. Ni, and M. Dijkstra, Crystal nucleation of hard spheres using molecular dynamics, umbrella sampling, and forward flux sampling: A comparison of simulation techniques, Journal of Chemical Physics, vol.133, issue.24, p.244115, 2010.

S. Auer and D. Frenkel, Prediction of absolute crystal-nucleation rate in hard-sphere colloids, Nature, vol.409, issue.6823, pp.1020-1023, 2001.

C. Sinn, A. Heymann, A. Stipp, and T. Palberg, Solidification kinetics of hardsphere colloidal suspensions, Trends in Colloid and Interface Science XV, Progress in Colloid and Polymer Science, pp.266-275, 2001.

J. L. Harland and W. Van-megen, Crystallization kinetics of suspensions of hard colloidal spheres, Physical Review E, vol.55, issue.3, pp.3054-3067, 1997.

K. Schätzel and B. J. Ackerson, Density fluctuations during crystallization of colloids, Physical Review E, vol.48, issue.5, pp.3766-3777, 1993.

S. Auer, W. C. Poon, and D. Frenkel, Phase behavior and crystallization kinetics of poly-12-hydroxystearic-coated polymethylmethacrylate colloids, Physical Review E, vol.67, issue.2, p.20401, 2003.

H. Schöpe, G. Bryant, and W. Van-megen, Small changes in particle-size distribution dramatically delay and enhance nucleation in hard sphere colloidal suspensions, Physical Review E, vol.74, issue.6, p.60401, 2006.

H. Schöpe, G. Bryant, and W. Van-megen, Effect of polydispersity on the crystallization kinetics of suspensions of colloidal hard spheres when approaching the glass transition, Journal of Chemical Physics, vol.127, issue.8, p.84505, 2007.

E. Sanz, C. Valeriani, E. Zaccarelli, W. C. Poon, P. N. Pusey et al., Crystallization Mechanism of Hard Sphere Glasses, Physical Review Letters, vol.106, issue.21, p.215701, 2011.

E. Sanz, C. Valeriani, E. Zaccarelli, C. K. Wilson, M. E. Poon et al., Avalanches mediate crystallization in a hard-sphere glass, Proceedings of the National Academy of Sciences, vol.111, issue.1, pp.75-80, 2014.

T. Yanagishima, J. Russo, and H. Tanaka, Common mechanism of thermodynamic and mechanical origin for ageing and crystallization of glasses, Nature Communications, vol.8, p.15954, 2017.

T. Schilling, H. J. Schöpe, M. Oettel, G. Opletal, and I. Snook, Precursor-Mediated Crystallization Process in Suspensions of Hard Spheres, Physical Review Letters, vol.105, issue.2, p.25701, 2010.

J. T. Berryman, M. Anwar, S. Dorosz, and T. Schilling, The early crystal nucleation process in hard spheres shows synchronised ordering and densification, Journal of Chemical Physics, vol.145, issue.21, p.211901, 2016.

E. R. Weeks, J. C. Crocker, A. C. Levitt, A. Schofield, and D. A. Weitz, Three-Dimensional Direct Imaging of Structural Relaxation Near the Colloidal Glass Transition, Science, vol.287, issue.5453, pp.627-631, 2000.

H. Tanaka, T. Kawasaki, H. Shintani, and K. Watanabe, Criticallike behaviour of glass-forming liquids, Nature Materials, vol.9, issue.4, pp.324-331, 2010.

T. Kawasaki and H. Tanaka, Structural origin of dynamic heterogeneity in three-dimensional colloidal glass formers and its link to crystal nucleation, Journal of Physics: Condensed Matter, vol.22, issue.23, p.232102, 2010.

M. Franke, S. Golde, and H. Schöpe, Solidification of a colloidal hard sphere like model system approaching and crossing the glass transition, Soft Matter, vol.10, issue.29, pp.5380-5389, 2014.

S. Golde, T. Palberg, and H. Schöpe, Correlation between dynamical and structural heterogeneities in colloidal hard-sphere suspensions, Nature Physics, vol.12, issue.7, pp.712-717, 2016.

J. Russo and H. Tanaka, The microscopic pathway to crystallization in supercooled liquids, Scientific Reports, vol.2, p.505, 2012.

M. Leocmach, J. Russo, and H. Tanaka, Importance of many-body correlations in glass transition: An example from polydisperse hard spheres, Journal of Chemical Physics, vol.138, issue.12, pp.12-536, 2013.
URL : https://hal.archives-ouvertes.fr/hal-01901035

H. Tong and H. Tanaka, Revealing Hidden Structural Order Controlling Both Fast and Slow Glassy Dynamics in Supercooled Liquids, Physical Review X, vol.8, issue.1, p.11041, 2018.

D. Coslovich, M. Ozawa, and L. Berthier, Local order and crystallization of dense polydisperse hard spheres, Journal of Physics: Condensed Matter, vol.30, issue.14, p.144004, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01767275

L. A. Fernández, V. Martín-mayor, and P. Verrocchio, Optimized Monte Carlo method for glasses, Philosophy Magazine, vol.87, issue.3-5, pp.581-586, 2007.

A. Ninarello, L. Berthier, and D. Coslovich, Models and Algorithms for the Next Generation of Glass Transition Studies, Physical Review X, vol.7, issue.2, p.21039, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01539636

L. Berthier, D. Coslovich, A. Ninarello, and M. Ozawa, Equilibrium sampling of hard spheres up to the jamming density and beyond, Physical Review Letters, vol.116, p.238002, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01331594

P. Charbonneau, J. Kurchan, G. Parisi, P. Urbani, and F. Zamponi, Fractal free energy landscapes in structural glasses, Nature Communications, vol.5, p.3725, 2014.
URL : https://hal.archives-ouvertes.fr/cea-01464477

. Walter and . Kauzmann, The Nature of the Glassy State and the Behavior of Liquids at Low Temperatures, Chemical Reviews, vol.43, issue.2, pp.219-256, 1948.

L. Berthier, P. Charbonneau, Y. Jin, G. Parisi, B. Seoane et al., Growing timescales and lengthscales characterizing vibrations of amorphous solids, Proceedings of the National Academy of Sciences, vol.113, issue.30, pp.8397-8401, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01360538

D. V. Talapin, E. V. Shevchenko, M. I. Bodnarchuk, X. Ye, J. Chen et al., Quasicrystalline order in self-assembled binary nanoparticle superlattices, Nature, vol.461, issue.7266, pp.964-967, 2009.

X. Ye, J. Chen, and C. B. Murray, Polymorphism in SelfAssembled AB6 Binary Nanocrystal Superlattices, Journal of the American Chemical Society, vol.133, issue.8, pp.2613-2620, 2011.

A. Michael, D. V. Boles, and . Talapin, Many-Body Effects in Nanocrystal Superlattices: Departure from Sphere Packing Explains Stability of Binary Phases, Journal of the American Chemical Society, vol.137, issue.13, pp.4494-4502, 2015.

C. Knorowski, S. Burleigh, and A. Travesset, Dynamics and Statics of DNAProgrammable Nanoparticle Self-Assembly and Crystallization, Physical Review Letters, vol.106, issue.21, p.215501, 2011.

A. Travesset, Binary nanoparticle superlattices of soft-particle systems, Proceedings of the National Academy of Sciences, vol.112, pp.9563-9567, 2015.

B. Pansu and J. Sadoc, Metallurgy of soft spheres with hard core: From BCC to Frank-Kasper phases, European Physical Journal E, vol.40, issue.11, p.102, 2017.

A. Travesset, Nanoparticle Superlattices as Quasi-Frank-Kasper Phases, Physical Review Letters, vol.119, issue.11, p.115701, 2017.

V. J. Anderson, N. W. Henk, and . Lekkerkerker, Insights into phase transition kinetics from colloid science, Nature, vol.416, issue.6883, pp.811-815, 2002.

C. Weis, I. Natalia, and N. Willenbacher, Effect of weak attractive interactions on flow behavior of highly concentrated crystalline suspensions, Journal of Rheology, vol.58, issue.5, pp.1583-1597, 2014.

E. Bartsch, T. Eckert, C. Pies, and H. Sillescu, The effect of free polymer on the glass transition dynamics of microgel colloids, Journal of Non-Crystalline Solids, pp.307-310, 2002.

W. C. Poon, K. N. Pham, S. U. Egelhaaf, and P. N. Pusey, Unsticking' a colloidal glass, and sticking it again, Journal of Physics: Condensed Matter, vol.15, issue.1, p.269, 2003.

A. Kozina, D. Sagawe, P. Díaz-leyva, E. Bartsch, and T. Palberg, Polymer-enforced crystallization of a eutectic binary hard sphere mixture, Soft Matter, vol.8, issue.3, pp.627-630, 2011.

O. Lester, R. L. Hedges, J. P. Jack, D. Garrahan, and . Chandler, Dynamic Order-Disorder in Atomistic Models of Structural Glass Formers, Science, vol.323, issue.5919, pp.1309-1313, 2009.

D. Coslovich and R. L. Jack, Structure of inactive states of a binary Lennard-Jones mixture, Journal of Statistical Mechanics, issue.7, p.74012, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01382770

D. Coslovich, M. Ozawa, and W. Kob, Dynamic and thermodynamic crossover scenarios in the kob-andersen mixture: Insights from multi-cpu and multigpu simulations, The European Physical Journal E, vol.41, issue.5, p.62, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01818216

C. N. Likos, Soft matter with soft particles, Soft Matter, vol.2, issue.6, pp.478-498, 2006.

A. St, J. Iyer, and L. Andrew-lyon, Self-Healing Colloidal Crystals. Angewandte Chemie International Edition, vol.48, pp.4562-4566, 2009.

A. Scotti, U. Gasser, E. S. Herman, J. Han, A. Menzel et al., Phase behavior of binary and polydisperse suspensions of compressible microgels controlled by selective particle deswelling, Physical Review E, vol.96, issue.3, p.32609, 2017.

A. Ikeda and K. Miyazaki, Slow dynamics of the high density Gaussian core model, Journal of Chemical Physics, vol.135, issue.5, p.54901, 2011.

S. Gupta, M. Camargo, J. Stellbrink, J. Allgaier, A. Radulescu et al., Dynamic phase diagram of soft nanocolloids, Nanoscale, vol.7, issue.33, pp.13924-13934, 2015.

K. Manoj, S. Nandi, and . Bhattacharyya, Analysis of the anomalous mean-field like properties of Gaussian core model in terms of entropy, Journal of Chemical Physics, vol.148, issue.3, p.34504, 2018.

D. W. Schaefer, Colloidal suspensions as soft core liquids, Journal of Chemical Physics, vol.66, issue.9, pp.3980-3984, 1977.

J. B. Hayter and J. Penfold, An analytic structure factor for macroion solutions, Molecular Physics, vol.42, issue.1, pp.109-118, 1981.

J. , P. Hansen, and J. B. Hayter, A rescaled MSA structure factor for dilute charged colloidal dispersions, Molecular Physics, vol.46, issue.3, pp.651-656, 1982.

M. Antti-pekka-hynninen and . Dijkstra, Phase diagrams of hard-core repulsive Yukawa particles, Physical Review E, vol.68, issue.2, p.21407, 2003.

G. Dupont, S. Moulinasse, J. P. Ryckaert, and M. Baus, The b.c.c.-f.c.c.-fluid triple point as obtained from Monte Carlo simulations of the Yukawa model for monodisperse colloidal suspensions, Molecular Physics, vol.79, issue.2, pp.453-456, 1993.
URL : https://hal.archives-ouvertes.fr/hal-01921975

S. Hamaguchi, R. T. Farouki, and D. H. Dubin, Triple point of Yukawa systems, Physical Review E, vol.56, issue.4, pp.4671-4682, 1997.

T. Palberg, W. Mönch, F. Bitzer, R. Piazza, and T. Bellini, Freezing Transition for Colloids with Adjustable Charge: A Test of Charge Renormalization, Physical Review Letters, vol.74, issue.22, pp.4555-4558, 1995.

P. Wette, I. Klassen, D. Holland-moritz, D. M. Herlach, H. J. Schöpe et al., Communications: Complete description of re-entrant phase behavior in a charge variable colloidal model system, Journal of Chemical Physics, vol.132, issue.13, p.131102, 2010.

J. K. Dhont, C. Smits, and H. N. Lekkerkerker, A time resolved static light scattering study on nucleation and crystallization in a colloidal system, Journal of Colloid and Interface Science, vol.152, issue.2, pp.386-401, 1992.

H. J. Schöpe and T. Palberg, Frustration of structural fluctuations upon equilibration of shear melts, Journal of Non-Crystalline Solids, pp.613-622, 2002.

P. Wette, H. J. Schöpe, and T. Palberg, Microscopic investigations of homogeneous nucleation in charged sphere suspensions, Journal of Chemical Physics, vol.123, issue.17, p.174902, 2005.

P. Wette and H. Schöpe, Nucleation kinetics in deionized charged colloidal model systems: A quantitative study by means of classical nucleation theory, Physical Review E, vol.75, issue.5, p.51405, 2007.

S. Auer and D. Frenkel, Crystallization of weakly charged colloidal spheres: A numerical study, Journal of Physics: Condensed Matter, vol.14, issue.33, p.7667, 2002.

K. Kratzer and A. Arnold, Two-stage crystallization of charged colloids under low supersaturation conditions, Soft Matter, vol.11, issue.11, pp.2174-2182, 2015.

P. Tan, N. Xu, and L. Xu, Visualizing kinetic pathways of homogeneous nucleation in colloidal crystallization, Nature Physics, vol.10, issue.1, pp.73-79, 2014.

J. Bosse and S. D. Wilke, Low-Density Ionic Glass, Physical Review Letters, vol.80, issue.6, pp.1260-1263, 1998.

E. Zaccarelli, S. Andreev, F. Sciortino, and D. R. Reichman, Numerical Investigation of Glassy Dynamics in Low-Density Systems, Physical Review Letters, vol.100, issue.19, p.195701, 2008.

R. Niu, S. Heidt, R. Sreij, R. I. Dekker, M. Hofmann et al., Formation of a transient amorphous solid in low density aqueous charged sphere suspensions, Scientific Reports, vol.7, issue.1, p.17044, 2017.

J. Liu, T. Shen, . Zhao-hua, S. Yang, G. Zhang et al., Multistep Heterogeneous Nucleation in Binary Mixtures of Charged Colloidal Spheres, Journal of Physical Chemistry Letters, vol.8, issue.19, pp.4652-4658, 2017.

A. Meller and J. Stavans, Glass transition and phase diagrams of strongly interacting binary colloidal mixtures, Physical Review Letters, vol.68, issue.24, pp.3646-3649, 1992.

P. Wette, H. J. Schöpe, and T. Palberg, Enhanced crystal stability in a binary mixture of charged colloidal spheres, Physical Review E, vol.80, issue.2, p.21407, 2009.

N. J. Lorenz and T. Palberg, Melting and freezing lines for a mixture of charged colloidal spheres with spindle-type phase diagram, Journal of Chemical Physics, vol.133, issue.10, p.104501, 2010.

H. Löwen, J. Hansen, and J. Roux, Brownian dynamics and kinetic glass transition in colloidal suspensions, Physical Review A, vol.44, issue.2, pp.1169-1181, 1991.

P. Salgi and R. Rajagopalan, Polydispersity in colloids: Implications to static structure and scattering, Advances in Colloid and Interface Science, vol.43, issue.2, pp.169-288, 1993.

E. Dickinson, R. Parker, and M. Lal, Polydispersity and the colloidal orderdisorder transition, Chemical Physics Letters, vol.79, issue.3, pp.578-582, 1981.

E. Dickinson and R. Parker, Polydispersity and the fluid-crystalline phase transition, Journal de Physique Letters, vol.46, issue.6, pp.229-232, 1985.
URL : https://hal.archives-ouvertes.fr/jpa-00232504

B. V. Tata and A. K. Arora, Crystalline-to-glass transition in charge polydisperse colloids, Journal of Physics: Condensed Matter, vol.4, issue.38, p.7699, 1992.

B. V. Tata and A. K. Arora, The stable state of charge polydisperse colloids: Disordered or charge ordered, Journal of Physics: Condensed Matter, vol.7, issue.20, p.3817, 1995.

J. Colombo and M. Dijkstra, Effect of quenched size polydispersity on the fluid-solid transition in charged colloidal suspensions, Journal of Chemical Physics, vol.134, p.154504, 2011.

A. Hynninen, C. G. Christova, R. Van-roij, A. Van-blaaderen, and M. Dijkstra, Prediction and Observation of Crystal Structures of Oppositely Charged Colloids, Physical Review Letters, vol.96, issue.13, p.138308, 2006.

A. Ben-simon, H. Eshet, and E. Rabani, On the Phase Behavior of Binary Mixtures of Nanoparticles, ACS Nano, vol.7, issue.2, pp.978-986, 2013.

R. Botet, B. Cabane, L. Goehring, J. Li, and F. Artzner, How do polydisperse repulsive colloids crystallize?, Faraday Discussions, vol.186, issue.0, pp.229-240, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01259510

W. Härtl, C. Segschneider, H. Versmold, and P. Linse, On the structure factor of liquid-like ordered binary mixtures of colloidal suspensions, Molecular Physics, vol.73, issue.3, pp.541-552, 1991.

N. Metropolis, A. W. Rosenbluth, M. N. Rosenbluth, A. H. Teller, and E. Teller, Equation of State Calculations by Fast Computing Machines, Journal of Chemical Physics, vol.21, issue.6, pp.1087-1092, 1953.

P. Van-beurten and A. Vrij, Polydispersity effects in the small-angle scattering of concentrated solutions of colloidal sphere, Journal of Chemical Physics, vol.74, issue.5, pp.2744-2748, 1981.

W. Lechner and C. Dellago, Accurate determination of crystal structures based on averaged local bond order parameters, Journal of Chemical Physics, vol.129, issue.11, p.114707, 2008.

E. E. Santiso, L. Bernhardt, and . Trout, A general set of order parameters for molecular crystals, Journal of Chemical Physics, vol.134, issue.6, p.64109, 2011.

S. Jabbari-farouji, J. Weis, P. Davidson, P. Levitz, and E. Trizac, On phase behavior and dynamical signatures of charged colloidal platelets, Scientific Reports, vol.3, p.3559, 2013.
URL : https://hal.archives-ouvertes.fr/hal-01489182

R. Klein, H. H. Von-grünberg, C. Bechinger, M. Brunner, and V. Lobaskin, Macroion shielding and state-dependent pair potentials in colloidal suspensions, Journal of Physics: Condensed Matter, vol.14, issue.33, p.7631, 2002.

, L'auteur remercie le CNRS et la région Bourgogne pour avoir permis le financement de cette thèse

, Je remercie sincèrement René Von Roij et Magali Duvail pour avoir accepté de rapporter cette thèse, ainsi que Nadine Pirio, Virginie Marry, Bernard Cabane

, Il me faut remercier sans réserve Christophe et Jean-Marc pour avoir pu m'encadrer toute ces années

, Un grand merci à Agnès, sans qui rien ne fonctionnerait, pour son efficacité et sa disponibilité pour résoudre les nombreux problèmes administratifs et logistiques. Also, special thanks to Simon for helping with the manuscript

A. Luis, . Fabrice, . Martin, . Axel, . Camille et al., Je voudrais également remercier les personnes suivantes pour leur collaboration, aide, soutien ou présence

. Enfin, je tiens à remercier ma mère pour son soutien important, indispensable et indéfectible, ainsi que mes soeurs, nièces et neveux. Je finis par une pensée pour mon père, ancien docteur