G. Eda, M. Chhowalla, C. Yan, J. H. Cho, and J. H. Ahn, Chemically Derived Graphene Oxide: Towards Large-Area Thin-Film Electronics and Optoelectronics, Advanced Materials, vol.113, issue.22, pp.2392-2415, 2010.
DOI : 10.1021/jp050745x

H. Flexible-graphene-based-supercapacitors-chang and H. Wu, A Review Graphene Based Nanomaterials: Synthesis, Properties, and Optical and Optoelectronic Applications Graphene based membranes, J. Phys. Chem. C Adv. Funct. Mater, vol.120, issue.235, pp.4153-4172, 2016.

R. Kumar, S. Chatterjee, K. Chua, C. K. Pumera, M. Pei et al., Comprehensive Review on the Use of Graphene Based Substrates for Regenerative Medicine and Biomedical Devices Chemical reduction of graphene oxide: a synthetic chemistry viewpoint The reduction of graphene oxide Spontaneous Formation of Liquid Crystals in Ultralarge Graphene Oxide Dispersions Aqueous Liquid Crystals of Graphene Oxide, ACS Appl. Mater. Interfaces Chem. Soc. Rev. Carbon Adv. Funct. Mater. ACS Nano J. Y, vol.44, issue.5011, pp.3210-3228, 2007.

M. Kim, S. O. Poulin, P. Jalili, R. Neri, W. Colin et al., Graphene Oxide Liquid Crystals, Angewandte Chemie International Edition, vol.23, issue.13, pp.3043-3047, 2011.
DOI : 10.1002/adma.201003296

S. H. Aboutalebi, G. Wallace, C. Zakri, O. Diat, D. Roux et al., Superflexibility of graphene oxide Effect of shear on a lyotropic lamellar phase Nematic Order Drives Macroscopic Patterns of Graphene Oxide in Drying Drops Controlling wrinkles and assembly patterns in dried graphene oxide films using lyotropic graphene oxide liquid crystals Drying of thin colloidal films, 14631?14637. (15), pp.11088-11093, 1993.

R. Witten, T. A. Singh, K. B. Tirumkudulu, M. S. Hong, S. H. Shen et al., Cracking in Drying Colloidal Films Water front recession and the formation of various types of wrinkles in dried graphene oxide droplets Water assisted stable dispersal of graphene oxide in non dispersible solvents and skin formation on the GO dispersion Hydration Responsive Folding and Unfolding in Graphene Oxide Liquid Crystal Phases Tunable assembly of graphene oxide surfactant sheets: wrinkles, overlaps and impacts on thin film properties, Capillary flow as the cause of ring stains from dried liquid drops 8019?8025. (22) 6096?6101. (23) Wang, pp.188-194, 1997.

S. W. Hong, J. Lee, and M. J. Buehler, Wrinkled Surface Mediated Antibacterial Activity of Graphene Oxide Nanosheets, 1343?1351. (25) Zang

X. Zhao, Multifunctionality and control of the crumpling and unfolding of large area graphene, 321?325. (26) Thomas, 2013.

A. H. Dyson and N. Koratkar, Controlled Crumpling of Graphene Oxide Films for Tunable Optical Transmittance, Adv. Mater. Z.; Zhang, H. C, vol.27, pp.3256-3265, 2015.

C. N. Lau, D. J. Harris, H. Hu, J. C. Conrad, J. Lewis et al., Patterning Colloidal Films via Evaporative Lithography The effect of shear and confinement on the buckling of particle laden interfaces (30) Pauchard, L.; Allain, C. Mechanical instability induced by complex liquid desiccation Taming contact line instability for pattern formation (32) De Gennes, P. G. Solvent evaporation of spin cast films: ?crust? effects Spin coating: One dimensional model, Effects on Evaporative Lithographic Patterning of Colloidal Films35) Cerda, E.; Mahadevan, L. Geometry and Physics of Wrinkling, pp.25101-25112, 1989.

. Phys, . Rev, J. Kim, L. J. Cote, F. Kim et al., Graphene Oxide Sheets at Interfaces Distribution of particles during solvent evaporation from films Skin Formation and Water Distribution in Semicrystalline Polymer Layers Cast from Solution: A Magnetic Resonance Imaging Study, J. Am. Chem. Soc. J.; Macosko, C. W. Interfacial Rheology and Structure of Tiled Graphene Oxide Sheets. Langmuir Chem. Eng. Sci. Macromolecules E, vol.90, issue.3640, pp.74302-8180, 2003.

J. Villacorta, F. Prieto, C. De-andres, A. De-kretster, R. G. Boger et al., Elastic constants of graphene oxide few layer films: correlations with interlayer stacking and bonding Compressive rheology: an overview, 125?165. (42) Zhou Boger, D. V. Chemical and physical control of the rheology of concentrated metal oxide suspensions, pp.4868-4875, 2003.

W. P. Lee and A. Routh, Why Do Drying Films Crack? Langmuir, 9885?9888. (44) Cheng, S.; Grest, G. S. Dispersing Nanoparticles in a Polymer Film via Solvent Evaporation. ACS Macro Lett, pp.694-698, 2001.
DOI : 10.1021/la049020v