Films Based on Poly(lactic acid) Biopolymer: Effect of Clay and Cellulosic Nanoparticles on their Physical, Mechanical and Structural Properties

Physical, mechanical and structural properties of poly(lactic acid) (PLA)-basedfilms containing different amounts of nanoclay and cellulose prepared bysolvent casting method were examined. Physical properties including thickness,transparency and color did not change significantly with addition of na...

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Main Authors: Saeed Dadashi, Seyed Mohammad Mousavi, Zahra Emam D-Jomeh, Abdulrasoul Oromiehie
Format: Article
Language:fas
Published: Iran Polymer and Petrochemical Institute 2012-12-01
Series:علوم و تکنولوژی پلیمر
Subjects:
AFM
Online Access:http://jips.ippi.ac.ir/article_555_155e90afec9e609965d4a595000c8db1.pdf
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spelling doaj-a476675a2c9a4105a65c185515ba04782020-11-24T23:55:38ZfasIran Polymer and Petrochemical Instituteعلوم و تکنولوژی پلیمر1016-32552008-08832012-12-0125212713610.22063/jipst.2012.555555Films Based on Poly(lactic acid) Biopolymer: Effect of Clay and Cellulosic Nanoparticles on their Physical, Mechanical and Structural PropertiesSaeed DadashiSeyed Mohammad MousaviZahra Emam D-JomehAbdulrasoul OromiehiePhysical, mechanical and structural properties of poly(lactic acid) (PLA)-basedfilms containing different amounts of nanoclay and cellulose prepared bysolvent casting method were examined. Physical properties including thickness,transparency and color did not change significantly with addition of nanoparticles to the polymer matrix. X-Ray diffraction (XRD) patterns showed that pure PLA has a semi-crystalline structure and addition of nanoclay into this polymer would produce more regular structure which results in improved crystallization. It also showed that the peak is shifted to lower degrees, with greater interlayer distance of nanoclay giving an intercalated structure. Because of the nature and particle size of the MCC, it did not interact sufficiently with the polymer. Tensile strength, elastic modulus andelongation-at-break of neat PLA were 27.44 MPa, 1.84 GPa and 24.53% which with the addition of 7% of nanoclay, was changed to 40.34, 2.62 and 10.36°C, respectively. As the results of XRD, MCC were indications of no significant effect on mechanical properties, AFM images were used to evaluate the surface morphology and roughness of PLA films. Neat PLA had smoother surfaces and a lower roughness parameter (Sa). This study indicates that PLA has acceptable properties which could be used forpackaging and other applications.http://jips.ippi.ac.ir/article_555_155e90afec9e609965d4a595000c8db1.pdfpoly(lactic acid)nanoclaycelluloseX-ray diffractionAFM
collection DOAJ
language fas
format Article
sources DOAJ
author Saeed Dadashi
Seyed Mohammad Mousavi
Zahra Emam D-Jomeh
Abdulrasoul Oromiehie
spellingShingle Saeed Dadashi
Seyed Mohammad Mousavi
Zahra Emam D-Jomeh
Abdulrasoul Oromiehie
Films Based on Poly(lactic acid) Biopolymer: Effect of Clay and Cellulosic Nanoparticles on their Physical, Mechanical and Structural Properties
علوم و تکنولوژی پلیمر
poly(lactic acid)
nanoclay
cellulose
X-ray diffraction
AFM
author_facet Saeed Dadashi
Seyed Mohammad Mousavi
Zahra Emam D-Jomeh
Abdulrasoul Oromiehie
author_sort Saeed Dadashi
title Films Based on Poly(lactic acid) Biopolymer: Effect of Clay and Cellulosic Nanoparticles on their Physical, Mechanical and Structural Properties
title_short Films Based on Poly(lactic acid) Biopolymer: Effect of Clay and Cellulosic Nanoparticles on their Physical, Mechanical and Structural Properties
title_full Films Based on Poly(lactic acid) Biopolymer: Effect of Clay and Cellulosic Nanoparticles on their Physical, Mechanical and Structural Properties
title_fullStr Films Based on Poly(lactic acid) Biopolymer: Effect of Clay and Cellulosic Nanoparticles on their Physical, Mechanical and Structural Properties
title_full_unstemmed Films Based on Poly(lactic acid) Biopolymer: Effect of Clay and Cellulosic Nanoparticles on their Physical, Mechanical and Structural Properties
title_sort films based on poly(lactic acid) biopolymer: effect of clay and cellulosic nanoparticles on their physical, mechanical and structural properties
publisher Iran Polymer and Petrochemical Institute
series علوم و تکنولوژی پلیمر
issn 1016-3255
2008-0883
publishDate 2012-12-01
description Physical, mechanical and structural properties of poly(lactic acid) (PLA)-basedfilms containing different amounts of nanoclay and cellulose prepared bysolvent casting method were examined. Physical properties including thickness,transparency and color did not change significantly with addition of nanoparticles to the polymer matrix. X-Ray diffraction (XRD) patterns showed that pure PLA has a semi-crystalline structure and addition of nanoclay into this polymer would produce more regular structure which results in improved crystallization. It also showed that the peak is shifted to lower degrees, with greater interlayer distance of nanoclay giving an intercalated structure. Because of the nature and particle size of the MCC, it did not interact sufficiently with the polymer. Tensile strength, elastic modulus andelongation-at-break of neat PLA were 27.44 MPa, 1.84 GPa and 24.53% which with the addition of 7% of nanoclay, was changed to 40.34, 2.62 and 10.36°C, respectively. As the results of XRD, MCC were indications of no significant effect on mechanical properties, AFM images were used to evaluate the surface morphology and roughness of PLA films. Neat PLA had smoother surfaces and a lower roughness parameter (Sa). This study indicates that PLA has acceptable properties which could be used forpackaging and other applications.
topic poly(lactic acid)
nanoclay
cellulose
X-ray diffraction
AFM
url http://jips.ippi.ac.ir/article_555_155e90afec9e609965d4a595000c8db1.pdf
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