Nanocasting conformal polymer coatings on preformed three-dimensional assemblies of nanoparticles, macroscopically classified as aerogels, reinforces the interparticle necks and increases the strength of the bulk material dramatically. For example, specific compressive strengths are reported to be higher than those for mild steel and aluminum, while the ability to store energy may surpass that of armor grade ceramics. Specific chemistries have been developed for cross-linking skeletal nanoparticles with polyureas and polyurethanes, epoxies, and polystyrene, while the technology has been demonstrated with ~30 different nanoparticle networks in addition to silica
Rare earth (RE) aerogels combine the typical high porosity of aerogels with useful electrical, magne...
Aerogels are the lightest solids known. Up to 1000 times lighter than glass and with a density as lo...
Aerogels are quasi-stable, low-density, three-dimensional assemblies of nanoparticles, but they are ...
Quasi-stable 3D assemblies of nanoparticles can be prepared via a typical sol-gel process. If the po...
The X-Aerogel is a new NASA-developed strong lightweight material made by reacting the mesoporous su...
Ultra-low density, three-dimensional assemblies of nanoparticles are referred to as aerogels, and ty...
In the quest for strong lightweight materials, silica aerogels would be very attractive, if they wer...
In the search for materials with better mechanical, thermal, and electrical properties, it is becomi...
Polymerization of a di-isocyanate with the surface amino groups of a sol-gel derived mesoporous sili...
Skeletal nanoparticles of porous low-density materials formally classified as aerogels are cross-lin...
In the search for materials with better mechanical, thermal, and electrical properties, it is becomi...
We describe a three-dimensional core-shell structure where the core is the assembly of nanoparticles...
Monolithic hierarchical fractal assemblies of silica nanoparticles are referred to as aerogels, and ...
Polymer nanocomposites reinforced with inorganic fillers have sparked new aerospace, sports goods, a...
Polymerization of a di-isocyanate with the amine-modified surface of a sol-gel derived mesoporous si...
Rare earth (RE) aerogels combine the typical high porosity of aerogels with useful electrical, magne...
Aerogels are the lightest solids known. Up to 1000 times lighter than glass and with a density as lo...
Aerogels are quasi-stable, low-density, three-dimensional assemblies of nanoparticles, but they are ...
Quasi-stable 3D assemblies of nanoparticles can be prepared via a typical sol-gel process. If the po...
The X-Aerogel is a new NASA-developed strong lightweight material made by reacting the mesoporous su...
Ultra-low density, three-dimensional assemblies of nanoparticles are referred to as aerogels, and ty...
In the quest for strong lightweight materials, silica aerogels would be very attractive, if they wer...
In the search for materials with better mechanical, thermal, and electrical properties, it is becomi...
Polymerization of a di-isocyanate with the surface amino groups of a sol-gel derived mesoporous sili...
Skeletal nanoparticles of porous low-density materials formally classified as aerogels are cross-lin...
In the search for materials with better mechanical, thermal, and electrical properties, it is becomi...
We describe a three-dimensional core-shell structure where the core is the assembly of nanoparticles...
Monolithic hierarchical fractal assemblies of silica nanoparticles are referred to as aerogels, and ...
Polymer nanocomposites reinforced with inorganic fillers have sparked new aerospace, sports goods, a...
Polymerization of a di-isocyanate with the amine-modified surface of a sol-gel derived mesoporous si...
Rare earth (RE) aerogels combine the typical high porosity of aerogels with useful electrical, magne...
Aerogels are the lightest solids known. Up to 1000 times lighter than glass and with a density as lo...
Aerogels are quasi-stable, low-density, three-dimensional assemblies of nanoparticles, but they are ...