The assembly of ordered arrangements of nanoparticles can represent a route towards the preparation of materials with innovative physical properties stemming from the characteristics of the nanoparticles themselves and from the controlled interactions amongst them. Composite materials could exhibit interesting photonic properties if different components are spaced regularly in its bulk: the controlled 2D or 3D assembly of core-shell polymer nanoparticles results in such a regular spacing of the core material. The possibility of controlling the size of the core and the thickness of the shell represents a viable route towards the design of photonic properties towards the realization of nanostructured polymer opals. PTFE latexes can be obtai...
Polytetrafluoroethylene (PTFE) latices with spherical and rod-like particles in the submicrometer si...
Polytetrafluoroethylene (PTFE) latices with spherical and rod-like particles in the submicrometer si...
A seeded surfactant-free methyl methacrylate emulsion polymerization is employed to prepare coreshel...
The assembly of ordered arrangements of nanoparticles can represent a route towards the preparation ...
The assembly of ordered arrangements of nanoparticles can represent a route towards the preparation ...
Nanosized PTFE-based core-shell particles can be prepared by emulsifier-free seed emulsion polymeriz...
Nanosized PTFE-based core-shell particles can be prepared by emulsifier-free seed emulsion polymeriz...
The preparation of polytetrafluoroethylene-poly(methyl methacrylate) (PTFE-PMMA) core-shell particle...
Nanosized PTFE-based core-shell particles can be prepared by emulsifier-free seed emulsion polymeriz...
Nanosized PTFE-based core-shell particles can be prepared by emulsifier-free seed emulsion polymeriz...
Nanosized PTFE-based core-shell particles can be prepared by emulsifier-free seed emulsion polymeriz...
A seeded surfactant-free methyl methacrylate emulsion polymerization is employed to prepare core\u20...
A PTFE latex, with particles in the submicrometer size range, was employed as seed in the emulsifier...
A PTFE latex, with particles in the submicrometer size range, was employed as seed in the emulsifier...
Polytetrafluoroethylene (PTFE) latices with spherical and rod-like particles in the submicrometer si...
Polytetrafluoroethylene (PTFE) latices with spherical and rod-like particles in the submicrometer si...
A seeded surfactant-free methyl methacrylate emulsion polymerization is employed to prepare coreshel...
The assembly of ordered arrangements of nanoparticles can represent a route towards the preparation ...
The assembly of ordered arrangements of nanoparticles can represent a route towards the preparation ...
Nanosized PTFE-based core-shell particles can be prepared by emulsifier-free seed emulsion polymeriz...
Nanosized PTFE-based core-shell particles can be prepared by emulsifier-free seed emulsion polymeriz...
The preparation of polytetrafluoroethylene-poly(methyl methacrylate) (PTFE-PMMA) core-shell particle...
Nanosized PTFE-based core-shell particles can be prepared by emulsifier-free seed emulsion polymeriz...
Nanosized PTFE-based core-shell particles can be prepared by emulsifier-free seed emulsion polymeriz...
Nanosized PTFE-based core-shell particles can be prepared by emulsifier-free seed emulsion polymeriz...
A seeded surfactant-free methyl methacrylate emulsion polymerization is employed to prepare core\u20...
A PTFE latex, with particles in the submicrometer size range, was employed as seed in the emulsifier...
A PTFE latex, with particles in the submicrometer size range, was employed as seed in the emulsifier...
Polytetrafluoroethylene (PTFE) latices with spherical and rod-like particles in the submicrometer si...
Polytetrafluoroethylene (PTFE) latices with spherical and rod-like particles in the submicrometer si...
A seeded surfactant-free methyl methacrylate emulsion polymerization is employed to prepare coreshel...