Multifunctional graphene silicone nacre like composite films
This proposal will develop a novel strategy for processing graphene nacre-like composite materials and will address study of of their multifunctional applications as as proof-of-concept. Impedance-dominated applications such as h...
ver más
¿Tienes un proyecto y buscas un partner? Gracias a nuestro motor inteligente podemos recomendarte los mejores socios y ponerte en contacto con ellos. Te lo explicamos en este video
Proyectos interesantes
MAT2013-46695-C3-2-R
MATERIALES MULTIFUNCIONALES CON NANOESTRUCTURAS DE CARBONO (...
80K€
Cerrado
MAT2014-57557-R
NANOCOMPOSITES CON ARQUITECTURAS ESTRUCTURADAS JERARQUICAMEN...
133K€
Cerrado
MAT2009-09335
DESARROLLO DE NUEVOS NANOCOMPUESTOS POLIMERICOS BASADOS EN G...
56K€
Cerrado
MAT2013-46695-C3-1-R
MATERIALES MULTIFUNCIONALES CON NANOESTRUCTURAS DE CARBONO (...
112K€
Cerrado
MAT2009-10866
DESARROLLO DE MATRICES CEMENTICIAS MULTIFUNCIONALES MEDIANTE...
61K€
Cerrado
MAT2013-46695-C3-3-R
MATERIALES MULTIFUNCIONALES CON NANOESTRUCTURAS DE CARBONO (...
101K€
Cerrado
Información proyecto SILGRAFUN
Duración del proyecto: 25 meses
Fecha Inicio: 2016-03-15
Fecha Fin: 2018-04-30
Fecha límite de participación
Sin fecha límite de participación.
Descripción del proyecto
This proposal will develop a novel strategy for processing graphene nacre-like composite materials and will address study of of their multifunctional applications as as proof-of-concept. Impedance-dominated applications such as high anticorrosive performance heat-healable coatings, excellent electromagnetic interference shields and flexible all-solid-state supercapacitors will be targeted. Our composite structures will mimic the brick-mortar layers found in natural nacre, to comply with exceptional strength and toughness requirements, and will have controllable graphene-graphene interlayer distances to tune diffusive and conductive properties as per the requirements of the target applications. The aim is to achieve a tailor-made combination of unique mechanical and electrical/diffusive properties by adapting the layered composite structure at different length scales with a simple manufacturing protocol, hence exploiting the outstanding properties of graphene and conferring our conductive composite films precisely designed functionalities.