International audiencePolymer-infiltrated nanoparticle films (PINFs) are a new class of nanocomposites that offer synergistic properties and functionality derived from unusually high fractions of nanomaterials. Recently, two versatile techniques,capillary rise infiltration (CaRI) and solvent-driven infiltration of polymer (SIP), have been introduced that exploit capillary forces in films of densely packed nanoparticles. In CaRI, a highly loaded PINF is produced by thermally induced wicking of polymer melt into the nanoparticle packing pores. In SIP, exposure of a polymer–nanoparticle bilayer to solvent vapor atmosphere induces capillary condensation of solvent in the pores of nanoparticle packing, leading to infiltration of polymer into the...
We investigate the role of physical confinement on the polymer viscosity and the glass transition te...
Polymer nanocomposites are employed in (micro)electronic, biomedical, structural and optical applica...
Polymer-infiltrated nanoparticle films (PINFs) are a new class of polymer nanocomposites that overco...
Capillary rise infiltration (CaRI) enables the fabrication of polymer nanocomposite films (PNCFs) wi...
Capillary rise infiltration (CaRI) enables the fabrication of polymer nanocomposite films (PNCFs) wi...
Nanocomposite films containing a high volume fraction (\u3e 50vol%) of nanoparticles (NPs) in a poly...
In this work, we present the fabrication of nanoporous polymer-infiltrated nanoparticle films (PINFs...
Polymer nanocomposites with high nanoparticle loadings are ubiquitous in nature but difficult to rep...
Polymer nanocomposites with high nanoparticle loadings are ubiquitous in nature but difficult to rep...
Infiltration of polymers into disordered nanoparticle packings has shown to be a powerful method of ...
High free volume polymers are characterized by much higher permeability and diffusivity for gases an...
Polymers and small molecules under nanoconfinement can show significantly deviated properties from b...
Nanoporous polymer films have been prepared using immiscible blends of polyetherimide (PEI) and poly...
Infiltration of polymers into disordered nanoparticle packings has shown to be a powerful method of ...
International audienceThe integration of porous thin films using microelectronic compatible processe...
We investigate the role of physical confinement on the polymer viscosity and the glass transition te...
Polymer nanocomposites are employed in (micro)electronic, biomedical, structural and optical applica...
Polymer-infiltrated nanoparticle films (PINFs) are a new class of polymer nanocomposites that overco...
Capillary rise infiltration (CaRI) enables the fabrication of polymer nanocomposite films (PNCFs) wi...
Capillary rise infiltration (CaRI) enables the fabrication of polymer nanocomposite films (PNCFs) wi...
Nanocomposite films containing a high volume fraction (\u3e 50vol%) of nanoparticles (NPs) in a poly...
In this work, we present the fabrication of nanoporous polymer-infiltrated nanoparticle films (PINFs...
Polymer nanocomposites with high nanoparticle loadings are ubiquitous in nature but difficult to rep...
Polymer nanocomposites with high nanoparticle loadings are ubiquitous in nature but difficult to rep...
Infiltration of polymers into disordered nanoparticle packings has shown to be a powerful method of ...
High free volume polymers are characterized by much higher permeability and diffusivity for gases an...
Polymers and small molecules under nanoconfinement can show significantly deviated properties from b...
Nanoporous polymer films have been prepared using immiscible blends of polyetherimide (PEI) and poly...
Infiltration of polymers into disordered nanoparticle packings has shown to be a powerful method of ...
International audienceThe integration of porous thin films using microelectronic compatible processe...
We investigate the role of physical confinement on the polymer viscosity and the glass transition te...
Polymer nanocomposites are employed in (micro)electronic, biomedical, structural and optical applica...
Polymer-infiltrated nanoparticle films (PINFs) are a new class of polymer nanocomposites that overco...