The preparation of polytetrafluoroethylene-poly(methyl methacrylate) (PTFE-PMMA) core-shell particles was described, featuring controlled size and narrow size distribution over a wide compositional range, through a seeded emulsion polymerization starting from a PTFE seed of 26 nanometers. Over the entire MMA/PTFE range, the particle size increases as the MMA/PTFE ratio increases. A very precise control over the particle size can be exerted by properly adjusting the ratio between the monomer and the PTFE seed. Particles in the 80–240nm range can be prepared with uniformity indexes suited to build 2D and 3D colloidal crystals. These core-shell particles were employed to prepare nanocomposites with different compositions, through an annealing ...
A PTFE latex, with particles in the submicrometer size range, was employed as seed in the emulsifier...
A seeded surfactant-free methyl methacrylate emulsion polymerization is employed to prepare core\u20...
he peculiar thermal behavior of four PTFE/PMMA (Polymethylmethacrylate) core-shell nanoparticle samp...
The preparation of polytetrafluoroethylene-poly(methyl methacrylate) (PTFE-PMMA) core-shell particle...
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...
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 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 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...
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...
A seeded surfactant-free methyl methacrylate emulsion polymerization is employed to prepare core\u20...
he peculiar thermal behavior of four PTFE/PMMA (Polymethylmethacrylate) core-shell nanoparticle samp...
The preparation of polytetrafluoroethylene-poly(methyl methacrylate) (PTFE-PMMA) core-shell particle...
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...
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 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 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...
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...
A seeded surfactant-free methyl methacrylate emulsion polymerization is employed to prepare core\u20...
he peculiar thermal behavior of four PTFE/PMMA (Polymethylmethacrylate) core-shell nanoparticle samp...