Skip to main content
English
Català
Čeština
Deutsch
Español
Français
Gàidhlig
Italiano
Latviešu
Magyar
Nederlands
Polski
Português
Português do Brasil
Srpski (lat)
Suomi
Svenska
Türkçe
Tiếng Việt
Қазақ
বাংলা
हिंदी
Ελληνικά
Српски
Yкраї́нська
Log In
Email address
Password
Log in
Have you forgotten your password?
Communities & Collections
All Contents
Statistics
English
Català
Čeština
Deutsch
Español
Français
Gàidhlig
Italiano
Latviešu
Magyar
Nederlands
Polski
Português
Português do Brasil
Srpski (lat)
Suomi
Svenska
Türkçe
Tiếng Việt
Қазақ
বাংলা
हिंदी
Ελληνικά
Српски
Yкраї́нська
Log In
Email address
Password
Log in
Have you forgotten your password?
Home
Araştırma Çıktıları | Web Of Science
Web of Science Koleksiyonu
English
English
No Thumbnail Available
Date
Authors
Basturk, SB
Dancer, CEJ
McNally, T
Journal Title
Journal ISSN
Volume Title
Publisher
0025-5408
Abstract
PERGAMON-ELSEVIER SCIENCE LTD
Description
Keywords
Composites of strontium titanate (SrTiO3) at loadings up to 50 vol.% with polar poly(butylene terephthalate) (PBT) and non-polar linear low density polyethylene (LLDPE) were prepared to investigate their dielectric responses in the wireless frequency range. The SrTiO3 particles were uniformly dispersed in the polymers at low loadings, but were more bead-like and agglomerated at higher SrTiO3 loadings. The SrTiO3 has a strong nucleating effect on both polymers, increasing the crystallization temperature and reducing the crystallinity of both polymers. Dielectric properties of composites were measured between 2.45-5 GHz. Dielectric permittivity (epsilon') of composites at 2.45 GHz increased with increasing SrTiO3 content. epsilon' increased by a factor of 5 for PBT, from 3.7 for unfilled PBT to 16.5 and by a factor of similar to 8.5 for unfilled LLDPE, from 2.3 to 19.7 for maximum SrTiO3 loading. The composites had similar dissipation factor values as the unfilled polymers. The Lichtenecker model was in good agreement with the experimental data.
Citation
URI
http://akademikarsiv.cbu.edu.tr:4000/handle/123456789/7270
Collections
Web of Science Koleksiyonu
Full item page