Title :
Modification of nanostructured mixed hexaferrite using a polyethylene glycol template
Author :
Kashid, P.B. ; Kulkarni, D.C. ; Puri, Vikram
Author_Institution :
Dept. of Phys., Shivaji Univ., Kolhapur, India
fDate :
6/1/2011 12:00:00 AM
Abstract :
The present Letter deals with the investigation on the synthesis and properties of nanostructured mixed barium hexaferrites of M-type (BaFe12O19) and Y-type (Ba2Co2Fe12O22). The nanoparticles of mixed hexaferrite (Ba-M-Y) were obtained using co-precipitation technique with and without addition of polyethylene Glycol (PEG) during synthesis. The precipitate was calcined at 600-C for 6-h and characterised for structural, morphological, electrical and microwave properties. PEG acts as a template for the formation of hexaferrite nanoparticles. Significant reduction in crystallite size and grain size was obtained for Ba-M-Y synthesised in the presence of PEG template. Owing to PEG template the temperature-dependent resistivity showed negative temperature coefficient properties whereas without PEG the Ba-M-Y showed positive temperature coefficient properties. The microwave dielectric constant of Ba-M-Y-PEG (5.5 at 10.4-GHz) was higher than that of Ba-M-Y (4.1 at 10.4-GHz). Owing to PEG the microwave absorption increases to almost 50- from less than 1- in the10-10.7-GHz range.
Keywords :
barium compounds; calcination; cobalt compounds; crystallites; electrical resistivity; electromagnetic wave absorption; ferrites; grain size; microwave materials; nanocomposites; nanofabrication; nanoparticles; organic-inorganic hybrid materials; permittivity; polymers; precipitation; Ba2Co2Fe12O22; BaFe12O19; calcination; coprecipitation technique; crystallite size; electrical properties; frequency 10 GHz to 10.7 GHz; grain size; hexaferrite nanoparticle formation; microwave absorption; microwave dielectric constant; microwave properties; morphological properties; nanostructured mixed barium hexaferrites; negative temperature coefficient properties; polyethylene glycol addition; polyethylene glycol template; positive temperature coefficient properties; structural properties; temperature 600 degC; temperature-dependent resistivity; time 6 h;
Journal_Title :
Micro & Nano Letters, IET
DOI :
10.1049/mnl.2011.0162