Thermotropic smectic liquid crystalline polymers were used as a scaffold to create organic/inorganic hybrid layered nanomaterials. Different polymers were prepared by photopolymerizing blends of a hydrogen bonded carboxylic acid derivative and a 10% cross-linker of variable length in their liquid crystalline phase. Nanopores with dimensions close to 1nm were generated by breaking the hydrogen bonded dimers in a high pH solution. The pores were filled with positively charged silver (Ag) ions, resulting in a layered silver(I)-polymeric hybrid material. Subsequent exposure to a NaBH4 reducing solution allowed for the formation of supported hybrid metal/organic films. In the bulk of the film the dimension of the Ag nanoparticles (NPs) was regul...
A nanoporous smectic liquid crystalline polymer network has been exploited to fabricate photo patter...
A nanoporous smectic liquid crystalline polymer network has been exploited to fabricate photo patter...
Many areas of technology continue to place a high demand on the miniaturization of critical componen...
Thermotropic smectic liquid crystalline polymers were used as a scaffold to create organic/inorganic...
\u3cp\u3eThermotropic smectic liquid crystalline polymers were used as a scaffold to create organic/...
Thermotropic smectic liquid crystalline polymers were used as a scaffold to create organic/inorganic...
Thermotropic smectic liquid crystalline polymers were used as a scaffold to create organic/inorganic...
Thermotropic smectic liquid crystalline polymers were used as a scaffold to create organic/inorganic...
Thermotropic smectic liquid crystalline polymers were used as a scaffold to create organic/inorganic...
Thermotropic smectic liquid crystalline polymers were used as a scaffold to create organic/inorganic...
Thermotropic smectic liquid crystalline polymers were used as a scaffold to create organic/inorganic...
Thermotropic smectic liquid crystalline polymers were used as a scaffold to create organic/inorganic...
A nanoporous smectic liquid crystalline polymer network has been exploited to fabricate photo patter...
A nanoporous smectic liquid crystalline polymer network has been exploited to fabricate photo patter...
A nanoporous smectic liquid crystalline polymer network has been exploited to fabricate photo patter...
A nanoporous smectic liquid crystalline polymer network has been exploited to fabricate photo patter...
A nanoporous smectic liquid crystalline polymer network has been exploited to fabricate photo patter...
Many areas of technology continue to place a high demand on the miniaturization of critical componen...
Thermotropic smectic liquid crystalline polymers were used as a scaffold to create organic/inorganic...
\u3cp\u3eThermotropic smectic liquid crystalline polymers were used as a scaffold to create organic/...
Thermotropic smectic liquid crystalline polymers were used as a scaffold to create organic/inorganic...
Thermotropic smectic liquid crystalline polymers were used as a scaffold to create organic/inorganic...
Thermotropic smectic liquid crystalline polymers were used as a scaffold to create organic/inorganic...
Thermotropic smectic liquid crystalline polymers were used as a scaffold to create organic/inorganic...
Thermotropic smectic liquid crystalline polymers were used as a scaffold to create organic/inorganic...
Thermotropic smectic liquid crystalline polymers were used as a scaffold to create organic/inorganic...
Thermotropic smectic liquid crystalline polymers were used as a scaffold to create organic/inorganic...
A nanoporous smectic liquid crystalline polymer network has been exploited to fabricate photo patter...
A nanoporous smectic liquid crystalline polymer network has been exploited to fabricate photo patter...
A nanoporous smectic liquid crystalline polymer network has been exploited to fabricate photo patter...
A nanoporous smectic liquid crystalline polymer network has been exploited to fabricate photo patter...
A nanoporous smectic liquid crystalline polymer network has been exploited to fabricate photo patter...
Many areas of technology continue to place a high demand on the miniaturization of critical componen...