Characterization and preparation of sago starch (SS) based reinforced with silver nanoparticle (SNP)

This paper reported on the properties of sago starch (SS) films impregnated with different concentration of sliver nano-particles (SNP) of 100, 2000, 5000 rpm with weight ratio of 1% and 10% to be used as wound healing material. The SS films were prepared through film moulding technique by mixing...

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Main Authors: Ahmad, Zuraida, A.K. , Ahmad Ulwi, T., Maisarah, A., Maisarah
Format: Article
Language:English
Published: Trans Tech Publications Ltd., Switzerland 2015
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Online Access:http://irep.iium.edu.my/48376/1/48376_-_Characterization_and_preparation_of_sago_starch_%28SS%29_based_reinforced_with_silver_nanoparticle_%28SNP%29.pdf
http://irep.iium.edu.my/48376/
http://www.scientific.net/AMR.1115.369
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Institution: Universiti Islam Antarabangsa Malaysia
Language: English
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spelling my.iium.irep.483762016-07-18T07:04:10Z http://irep.iium.edu.my/48376/ Characterization and preparation of sago starch (SS) based reinforced with silver nanoparticle (SNP) Ahmad, Zuraida A.K. , Ahmad Ulwi T., Maisarah A., Maisarah TA164 Bioengineering TA401 Materials of engineering and construction This paper reported on the properties of sago starch (SS) films impregnated with different concentration of sliver nano-particles (SNP) of 100, 2000, 5000 rpm with weight ratio of 1% and 10% to be used as wound healing material. The SS films were prepared through film moulding technique by mixing aqueous SNP with SS, glycerol and water at weight percentage of 6.5:3.5:90. The performance of SS-SNP films produced is studied. The morphology study shows the existence of SNP embedded in the SS particles. SNP with 2000ppm has the biggest particle width but small in particle sizes, which make the SS-SNP film of 2000ppm is superior in thickness, denser and has lower moisture content compared to other SS-SNP film with different composition. The highest water absorption occurred in the SS-SNP of 100ppm, due to the high existence of pores in the network of amylose content in starch. SNP act as particulate reinforcement in the SS film meaning higher number of ppm made the film more brittle and easy to rupture. Thus, the SS-SNP film of 5000ppm has the lowest tensile strength and modulus for tensile strength and modulus. It can be concluded that the SS-SNP film of 2000ppm is suitable to be used as wound healing material, as the addition of 2000ppm SNP inside the SS films help in improving the properties of SS-SNP film produced. Trans Tech Publications Ltd., Switzerland 2015-07 Article REM application/pdf en http://irep.iium.edu.my/48376/1/48376_-_Characterization_and_preparation_of_sago_starch_%28SS%29_based_reinforced_with_silver_nanoparticle_%28SNP%29.pdf Ahmad, Zuraida and A.K. , Ahmad Ulwi and T., Maisarah and A., Maisarah (2015) Characterization and preparation of sago starch (SS) based reinforced with silver nanoparticle (SNP). Advanced Materials Research, 1115. pp. 369-372. ISSN 1662-8985 http://www.scientific.net/AMR.1115.369 10.4028/www.scientific.net/AMR.1115.369
institution Universiti Islam Antarabangsa Malaysia
building IIUM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider International Islamic University Malaysia
content_source IIUM Repository (IREP)
url_provider http://irep.iium.edu.my/
language English
topic TA164 Bioengineering
TA401 Materials of engineering and construction
spellingShingle TA164 Bioengineering
TA401 Materials of engineering and construction
Ahmad, Zuraida
A.K. , Ahmad Ulwi
T., Maisarah
A., Maisarah
Characterization and preparation of sago starch (SS) based reinforced with silver nanoparticle (SNP)
description This paper reported on the properties of sago starch (SS) films impregnated with different concentration of sliver nano-particles (SNP) of 100, 2000, 5000 rpm with weight ratio of 1% and 10% to be used as wound healing material. The SS films were prepared through film moulding technique by mixing aqueous SNP with SS, glycerol and water at weight percentage of 6.5:3.5:90. The performance of SS-SNP films produced is studied. The morphology study shows the existence of SNP embedded in the SS particles. SNP with 2000ppm has the biggest particle width but small in particle sizes, which make the SS-SNP film of 2000ppm is superior in thickness, denser and has lower moisture content compared to other SS-SNP film with different composition. The highest water absorption occurred in the SS-SNP of 100ppm, due to the high existence of pores in the network of amylose content in starch. SNP act as particulate reinforcement in the SS film meaning higher number of ppm made the film more brittle and easy to rupture. Thus, the SS-SNP film of 5000ppm has the lowest tensile strength and modulus for tensile strength and modulus. It can be concluded that the SS-SNP film of 2000ppm is suitable to be used as wound healing material, as the addition of 2000ppm SNP inside the SS films help in improving the properties of SS-SNP film produced.
format Article
author Ahmad, Zuraida
A.K. , Ahmad Ulwi
T., Maisarah
A., Maisarah
author_facet Ahmad, Zuraida
A.K. , Ahmad Ulwi
T., Maisarah
A., Maisarah
author_sort Ahmad, Zuraida
title Characterization and preparation of sago starch (SS) based reinforced with silver nanoparticle (SNP)
title_short Characterization and preparation of sago starch (SS) based reinforced with silver nanoparticle (SNP)
title_full Characterization and preparation of sago starch (SS) based reinforced with silver nanoparticle (SNP)
title_fullStr Characterization and preparation of sago starch (SS) based reinforced with silver nanoparticle (SNP)
title_full_unstemmed Characterization and preparation of sago starch (SS) based reinforced with silver nanoparticle (SNP)
title_sort characterization and preparation of sago starch (ss) based reinforced with silver nanoparticle (snp)
publisher Trans Tech Publications Ltd., Switzerland
publishDate 2015
url http://irep.iium.edu.my/48376/1/48376_-_Characterization_and_preparation_of_sago_starch_%28SS%29_based_reinforced_with_silver_nanoparticle_%28SNP%29.pdf
http://irep.iium.edu.my/48376/
http://www.scientific.net/AMR.1115.369
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