PLA-SiO2 nanocomposite films: morphological and mechanical properties and specific end-use characteristics

<strong>Objective(s): </strong>Application of eco-friendly materials like poly lactic acid (PLA) is increasing, to reduce environmental pollutions. In this research, the effect of silicon dioxide 1%, 3% and 5% nanoparticles on morphological, mechanical and chemicals interaction (FTIR) of...

Full description

Bibliographic Details
Main Authors: Mohadeseh Famil Zirak, Mahsa Tabari
Format: Article
Language:English
Published: Iranian Society of Nanomedicine 2018-09-01
Series:Nanomedicine Research Journal
Subjects:
Online Access:http://www.nanomedicine-rj.com/article_32924_bb87623a2a1bb07fc2a70ddc9a89ef3a.pdf
id doaj-976cc7ab4d22422b9201bc9dfceedfb8
record_format Article
spelling doaj-976cc7ab4d22422b9201bc9dfceedfb82020-11-25T02:38:28ZengIranian Society of NanomedicineNanomedicine Research Journal 2476-34892476-71232018-09-013314014510.22034/nmrj.2018.03.00432924PLA-SiO2 nanocomposite films: morphological and mechanical properties and specific end-use characteristicsMohadeseh Famil Zirak0Mahsa Tabari1Department of Agricultural Engineering-Food Sciences and Industries, Islamic Azad University, Tehran North Branch, IranDepartment of Food Sciences and Industries, Faculty of Agriculture, Islamic Azad University, Tehran North Branch, Tehran, Iran<strong>Objective(s): </strong>Application of eco-friendly materials like poly lactic acid (PLA) is increasing, to reduce environmental pollutions. In this research, the effect of silicon dioxide 1%, 3% and 5% nanoparticles on morphological, mechanical and chemicals interaction (FTIR) of PLA film was studied. <strong>Materials and Methods:</strong> Scanning electron microscope (SEM) was used, to consider morphological structure of nanocomposites. Mechanical characteristics of films, measurement of tensile strength, elongation at break point and Yong modulus also were considered by using tensile device and ASTM D 882. The FT-IR spectrum of films with PERKIN ELMER 1650, FT-IR spectrophotometer was recorded. <strong>Results: </strong>Morphological evaluation of PLA composite strings shows desirable and steady distribution of nanoparticles for the sample with 1 percent weight of Silica volume and by increasing Silica contents from 1 to 5 percent, nanoparticles start to form mass. Comparison of average of tensile resistance, elongation at break point and Young modulus in pure PLA film with PLA film including 1% SiO<sub>2</sub> shows insignificance of average of these groups (P>0.05). In the consideration, FTIR shows proper distribution of nano-SiO<sub>2</sub> dioxide in film composites and connection is created and doesn’t have difference with pure PLA. <strong>Conclusion:</strong> Performed considerations show that PLA films containing SiO<sub>2 </sub>have proper potential for application in packaging mechanically.http://www.nanomedicine-rj.com/article_32924_bb87623a2a1bb07fc2a70ddc9a89ef3a.pdfmorphological and mechanical propertiespoly lactic acid nanocomposite filmssilicon dioxide nanoparticle
collection DOAJ
language English
format Article
sources DOAJ
author Mohadeseh Famil Zirak
Mahsa Tabari
spellingShingle Mohadeseh Famil Zirak
Mahsa Tabari
PLA-SiO2 nanocomposite films: morphological and mechanical properties and specific end-use characteristics
Nanomedicine Research Journal
morphological and mechanical properties
poly lactic acid nanocomposite films
silicon dioxide nanoparticle
author_facet Mohadeseh Famil Zirak
Mahsa Tabari
author_sort Mohadeseh Famil Zirak
title PLA-SiO2 nanocomposite films: morphological and mechanical properties and specific end-use characteristics
title_short PLA-SiO2 nanocomposite films: morphological and mechanical properties and specific end-use characteristics
title_full PLA-SiO2 nanocomposite films: morphological and mechanical properties and specific end-use characteristics
title_fullStr PLA-SiO2 nanocomposite films: morphological and mechanical properties and specific end-use characteristics
title_full_unstemmed PLA-SiO2 nanocomposite films: morphological and mechanical properties and specific end-use characteristics
title_sort pla-sio2 nanocomposite films: morphological and mechanical properties and specific end-use characteristics
publisher Iranian Society of Nanomedicine
series Nanomedicine Research Journal
issn 2476-3489
2476-7123
publishDate 2018-09-01
description <strong>Objective(s): </strong>Application of eco-friendly materials like poly lactic acid (PLA) is increasing, to reduce environmental pollutions. In this research, the effect of silicon dioxide 1%, 3% and 5% nanoparticles on morphological, mechanical and chemicals interaction (FTIR) of PLA film was studied. <strong>Materials and Methods:</strong> Scanning electron microscope (SEM) was used, to consider morphological structure of nanocomposites. Mechanical characteristics of films, measurement of tensile strength, elongation at break point and Yong modulus also were considered by using tensile device and ASTM D 882. The FT-IR spectrum of films with PERKIN ELMER 1650, FT-IR spectrophotometer was recorded. <strong>Results: </strong>Morphological evaluation of PLA composite strings shows desirable and steady distribution of nanoparticles for the sample with 1 percent weight of Silica volume and by increasing Silica contents from 1 to 5 percent, nanoparticles start to form mass. Comparison of average of tensile resistance, elongation at break point and Young modulus in pure PLA film with PLA film including 1% SiO<sub>2</sub> shows insignificance of average of these groups (P>0.05). In the consideration, FTIR shows proper distribution of nano-SiO<sub>2</sub> dioxide in film composites and connection is created and doesn’t have difference with pure PLA. <strong>Conclusion:</strong> Performed considerations show that PLA films containing SiO<sub>2 </sub>have proper potential for application in packaging mechanically.
topic morphological and mechanical properties
poly lactic acid nanocomposite films
silicon dioxide nanoparticle
url http://www.nanomedicine-rj.com/article_32924_bb87623a2a1bb07fc2a70ddc9a89ef3a.pdf
work_keys_str_mv AT mohadesehfamilzirak plasio2nanocompositefilmsmorphologicalandmechanicalpropertiesandspecificendusecharacteristics
AT mahsatabari plasio2nanocompositefilmsmorphologicalandmechanicalpropertiesandspecificendusecharacteristics
_version_ 1724790754313764864