P. Andersson-ersman, J. Kawahara, and M. Berggren, Printed passive matrix addressed electrochromic displays, Organic Electronics, vol.14, issue.12, pp.3371-3378, 2013.

P. Tehrani, Improving the contrast of all-printed electrochromic polymer on paper displays, Journal of Materials Chemistry, vol.19, issue.13, pp.1799-1802, 2009.

G. H. Gelinck, Flexible active-matrix displays and shift registers based on solution-processed organic transistors, Nat. Mater, vol.3, pp.106-109, 2004.

J. Liang, C. Jiang, and W. Wu, Toward fiber-, paper-, and foam-based flexible solid-state supercapacitors: electrode materials and device designs, Nanoscale, vol.11, issue.15, pp.7041-7061, 2019.

L. Liu, Y. Feng, and W. Wu, Recent progress in printed flexible solid-state supercapacitors for portable and wearable energy storage, Journal of Power Sources, pp.69-77, 2019.

W. Wu, Inorganic nanomaterials for printed electronics: a review, Nanoscale, vol.9, issue.22, pp.7342-7372, 2017.

W. Wu, Stretchable electronics: functional materials, fabrication strategies and applications. Science and Technology of Advanced Materials, vol.20, pp.187-224, 2019.

J. Heikenfeld, Review Paper: A critical review of the present and future prospects for electronic paper, Journal of the Society for Information Display, vol.19, issue.2, pp.129-156, 2011.

B. Comiskey, An electrophoretic ink for all-printed reflective electronic displays, Nature, vol.394, issue.6690, pp.253-255, 1998.

Y. Chen, Electronic paper: Flexible active-matrix electronic ink display, Nature, vol.423, issue.6936, pp.136-136, 2003.

H. Kawamoto, The history of liquid-crystal displays, Proceedings of the IEEE, vol.90, pp.460-500, 2002.

A. Henzen, Development of active-matrix electronic-ink displays for handheld devices, Journal of the Society for Information Display, vol.12, issue.1, pp.17-22, 2004.

S. E. Burns, A scalable manufacturing process for flexible active-matrix e-paper displays, Journal of the Society for Information Display, vol.13, issue.7, pp.583-586, 2005.

G. H. Gelinck, Flexible active-matrix displays and shift registers based on solution-processed organic transistors, Nat Mater, vol.3, issue.2, pp.106-110, 2004.

T. Kawase, Inkjet printing of polymer thin film transistors, Thin Solid Films, pp.279-287, 2003.

H. Edzer, Flexible electronic-paper active-matrix displays, Journal of the Society for Information Display, vol.14, issue.8, pp.729-733, 2006.

J. Park and J. M. Jacobson, All printed bistable reflective displays: Printable electrophoretic ink and all printed Metal-Insulator-Metal Diodes, Materials Research Society Symposium -Proceedings, 1998.

T. Bert, Passive matrix addressing of electrophoretic image display, 22nd International Display Research Conference, 2002.

K. E. Lilja, Printed organic diode backplane for matrix addressing an electrophoretic display, Thin Solid Films, vol.518, issue.15, pp.4385-4389, 2010.

J. F. Scott, C. A. Paz-de, and . Araujo, Ferroelectric memories, Science, vol.246, issue.4936, pp.1400-1405, 1989.

N. Setter, Ferroelectric thin films: Review of materials, properties, and applications, Journal of Applied Physics, vol.100, issue.5, p.51606, 2006.

T. Yagi, M. Tatemoto, and J. Sako, Transition behavior and dielectric properties in trifluoroethylene and vinylidene fluoride copolymers, Polymer Journal, vol.12, issue.4, pp.209-223, 1980.

N. Yamauchi, METAL-INSULATOR-SEMICONDUCTOR (MIS) DEVICE USING A FERROELECTRIC POLYMER THIN FILM IN THE GATE INSULATOR, Regular Papers & Short Notes, vol.1, pp.590-594, 1986.

Q. Ling, Polymer electronic memories: Materials, devices and mechanisms. Progress in Polymer Science, vol.33, pp.917-978, 2008.

M. Mai, Ferroelectric Polymer Thin Films for Organic Electronics, Journal of Nanomaterials, p.14, 2015.

H. Xu, Ferroelectric and switching behavior of poly(vinylidene fluoride-trifluoroethylene) copolymer ultrathin films with polypyrrole interface, Applied Physics Letters, vol.90, issue.9, p.92903, 2007.

X. Li, P(VDF-TrFE) ferroelectric nanotube array for high energy density capacitor applications, Physical Chemistry Chemical Physics, vol.15, issue.2, pp.515-520, 2013.

S. Fabiano, X. Crispin, and M. Berggren, Ferroelectric Polarization Induces Electric Double Layer Bistability in Electrolyte-Gated Field-Effect Transistors, vol.6, pp.438-442, 2014.

Y. Zheng, Gate-controlled nonvolatile graphene-ferroelectric memory, Applied Physics Letters, vol.94, issue.16, p.163505, 2009.

T. Sekitani, Printed Nonvolatile Memory for a Sheet-Type Communication System. Electron Devices, IEEE Transactions on, vol.56, issue.5, pp.1027-1035, 2009.

K. Asadi, Organic non-volatile memories from ferroelectric phase-separated blends, Nat Mater, vol.7, issue.7, pp.547-550, 2008.

R. C. Naber, Organic Nonvolatile Memory Devices Based on Ferroelectricity. Advanced Materials, vol.22, issue.9, pp.933-945, 2010.

K. Asadi, P. W. Blom, and D. M. De-leeuw, The MEMOLED: Active addressing with passive driving, Advanced Materials, vol.23, issue.7, pp.865-868, 2011.

S. Fabiano, Ferroelectric polarization induces electronic nonlinearity in ion-doped conducting polymers, Science Advances, vol.3, p.1700345, 2017.

A. Charbonnier, Synthesis of functional polymer particles by dispersion polymerization in organic media: A tool toward stable electrophoretic inks, Journal of Polymer Science Part A: Polymer Chemistry, vol.51, issue.21, pp.4608-4617, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00926311

W. Stöber, A. Fink, and E. Bohn, Controlled growth of monodisperse silica spheres in the micron size range, Journal of Colloid and Interface Science, vol.26, issue.1, pp.62-69, 1968.

A. Noel, Tridodecylamine, an efficient charge control agent in non-polar media for electrophoretic inks application, Applied Surface Science, vol.428, pp.870-876, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01624040

J. Kawahara, Improving the color switch contrast in PEDOT:PSS-based electrochromic displays, Organic Electronics, vol.13, issue.3, pp.469-474, 2012.

B. A. Yezer, Use of electrochemical impedance spectroscopy to determine double-layer capacitance in doped nonpolar liquids, Journal of colloid and interface science, vol.449, pp.2-12, 2015.

H. Kliem and R. Tadros-morgane, Extrinsic versus intrinsic ferroelectric switching: experimental investigations using ultra-thin PVDF Langmuir-Blodgett films, Journal of Physics D: Applied Physics, vol.38, issue.12, p.1860, 2005.

R. J. Ferris, Electric Double Layer Formed by Polarized Ferroelectric Thin Films, Acs Applied Materials & Interfaces, issue.5, pp.2610-2617, 2013.