Title :
Novel core-shell nanocomposites for RF embedded capacitors: Processing and characterization
Author :
Benhadjala, Warda ; Bord, Isabelle ; Béchou, Laurent ; Suhir, Ephraïm ; Buet, Matthieu ; Rougé, Fabien ; Ousten, Yves
Author_Institution :
Lab. IMS, Univ. de Bordeaux, Talence, France
fDate :
May 29 2012-June 1 2012
Abstract :
Thin capacitors using new hybrid nanoparticles as dielectric material have been successfully fabricated by a roll-to-roll process. The nanoparticles with a BaTiO3 core and a hyperbranched polyester shell have been synthesized at a filler fraction of approximately 41 wt%. For the first time, dielectric properties of monolithic nanocomposite-based capacitors have been investigated over an extremely wide frequency range from 10Hz to 1.2GHz. A dedicated test circuit has been designed and manufactured to characterize the capacitors at high frequencies directly on the sample. It has been demonstrated that promising resonance frequencies above 600MHz and dielectric constants needed for the existing commercial products can be achieved on the basis of the employed nano-technology. We conclude that hybrid BaTiO3/hyperbranched-polyester nanoparticles have the potential to outperform the existing systems and are suitable for the use as an effective dielectric in embedded radiofrequency (RF) capacitors.
Keywords :
barium compounds; capacitors; dielectric materials; nanocomposites; nanoparticles; nanotechnology; permittivity; polymers; BaTiO3; core-shell nanocomposites; dielectric constants; dielectric material; dielectric properties; embedded radiofrequency capacitors; frequency 10 Hz to 1.2 GHz; hybrid nanoparticles; hyperbranched polyester shell; hyperbranched-polyester nanoparticles; monolithic nanocomposite-based capacitors; nanotechnology; roll-to-roll process; thin capacitors; Capacitors; Frequency measurement; Impedance; Nanocomposites; Nanoparticles; Resonant frequency;
Conference_Titel :
Electronic Components and Technology Conference (ECTC), 2012 IEEE 62nd
Conference_Location :
San Diego, CA
Print_ISBN :
978-1-4673-1966-9
Electronic_ISBN :
0569-5503
DOI :
10.1109/ECTC.2012.6249141