Electron beam irradiated nanocomposite for gas barrier application
Polyolefins, such as polypropylene and polyethylene find extensive use in packaging. Improvements in poor barrier properties of polyolefins will be beneficial for the current applications and should also lead to applications in pharmaceuticals, electronic packaging and particularly packaging of food...
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my.iium.irep.67712011-11-29T06:20:41Z http://irep.iium.edu.my/6771/ Electron beam irradiated nanocomposite for gas barrier application Anuar, Hazleen Jamal, Nur Ayuni Abd Razak, Shamsul Bahri TS195 Packaging Polyolefins, such as polypropylene and polyethylene find extensive use in packaging. Improvements in poor barrier properties of polyolefins will be beneficial for the current applications and should also lead to applications in pharmaceuticals, electronic packaging and particularly packaging of food products, which are sensitive to oxygen. Most schemes to improve polyolefins gas barrier property involve either addition of higher barrier plastics via a multilayer structure or high barrier surface coatings, however, these approaches are not cost effective. The emerging field of polymer-layered nanocomposites is unique in that it addresses shortcomings of polyolefins for both packaging and engineered applications requiring desirable mechanical, thermal as well as good barrier properties. 2011-02-17 Conference or Workshop Item REM application/pdf en http://irep.iium.edu.my/6771/1/Poster_MTE_-_Electron_Beam_Nanocomposite-R3.pdf Anuar, Hazleen and Jamal, Nur Ayuni and Abd Razak, Shamsul Bahri (2011) Electron beam irradiated nanocomposite for gas barrier application. In: Malaysia Technology Expo (MTE 2011), 17-19 February 2011, KLCC. (Unpublished) http://mte.org.my/mte2011/index.php |
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TS195 Packaging Anuar, Hazleen Jamal, Nur Ayuni Abd Razak, Shamsul Bahri Electron beam irradiated nanocomposite for gas barrier application |
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Polyolefins, such as polypropylene and polyethylene find extensive use in packaging. Improvements in poor barrier properties of polyolefins will be beneficial for the current applications and should also lead to applications in pharmaceuticals, electronic packaging and particularly packaging of food products, which are sensitive to oxygen. Most schemes to improve polyolefins gas barrier property involve either addition of higher barrier plastics via a multilayer structure or high barrier surface coatings, however, these approaches are not cost effective. The emerging field of polymer-layered nanocomposites is unique in that it addresses shortcomings of polyolefins for both packaging and engineered applications requiring desirable mechanical, thermal as well as good barrier properties.
|
format |
Conference or Workshop Item |
author |
Anuar, Hazleen Jamal, Nur Ayuni Abd Razak, Shamsul Bahri |
author_facet |
Anuar, Hazleen Jamal, Nur Ayuni Abd Razak, Shamsul Bahri |
author_sort |
Anuar, Hazleen |
title |
Electron beam irradiated nanocomposite for gas barrier application
|
title_short |
Electron beam irradiated nanocomposite for gas barrier application
|
title_full |
Electron beam irradiated nanocomposite for gas barrier application
|
title_fullStr |
Electron beam irradiated nanocomposite for gas barrier application
|
title_full_unstemmed |
Electron beam irradiated nanocomposite for gas barrier application
|
title_sort |
electron beam irradiated nanocomposite for gas barrier application |
publishDate |
2011 |
url |
http://irep.iium.edu.my/6771/1/Poster_MTE_-_Electron_Beam_Nanocomposite-R3.pdf http://irep.iium.edu.my/6771/ http://mte.org.my/mte2011/index.php |
_version_ |
1643605807134146560 |
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13.211869 |