Silica nanoparticles treated by cold atmospheric-pressure plasmas improve the dielectric performance of organic–inorganic nanocomposites


Autoria(s): Yan, Wei; Han, Zhao Jun; Phung, B. Toan; Ostrikov, Kostya
Data(s)

2012

Resumo

We report on the application of cold atmospheric-pressure plasmas to modify silica nanoparticles to enhance their compatibility with polymer matrices. Thermally nonequilibrium atmospheric-pressure plasma is generated by a high-voltage radio frequency power source operated in the capacitively coupled mode with helium as the working gas. Compared to the pure polymer and the polymer nanocomposites with untreated SiO2, the plasma-treated SiO2–polymer nanocomposites show higher dielectric breakdown strength and extended endurance under a constant electrical stress. These improvements are attributed to the stronger interactions between the SiO2 nanoparticles and the surrounding polymer matrix after the plasma treatment. Our method is generic and can be used in the production of high-performance organic–inorganic functional nanocomposites.

Identificador

http://eprints.qut.edu.au/73614/

Publicador

American Chemical Society

Relação

DOI:10.1021/am300300f

Yan, Wei, Han, Zhao Jun, Phung, B. Toan, & Ostrikov, Kostya (2012) Silica nanoparticles treated by cold atmospheric-pressure plasmas improve the dielectric performance of organic–inorganic nanocomposites. ACS Applied Materials & Interfaces, 4(5), pp. 2637-2642.

Fonte

Science & Engineering Faculty

Tipo

Journal Article