Making Polyurethanes from castor oil with addition of Bentonite and Chitosan as coating paints on eco-friendly medical device applications

Polyurethane-based vegetable oil coatings have been used in the past few decades considering the use of petrochemical-based raw materials is a non-renewable material. Vegetable oils used such as soybean oil, palm oil, and castor oil. They have lower environmental impacts, easy availability and biode...

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Main Authors: T., Rihayat, Suryani, ., S., Riskina, J.P., Sirega, J., Jaafar, T., Cionita*, Fitria, .
Format: Article
Published: IOP Publishing 2020
Subjects:
Online Access:http://eprints.intimal.edu.my/1432/
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author T., Rihayat
Suryani, .
S., Riskina
J.P., Sirega
J., Jaafar
T., Cionita*
Fitria, .
author_facet T., Rihayat
Suryani, .
S., Riskina
J.P., Sirega
J., Jaafar
T., Cionita*
Fitria, .
author_sort T., Rihayat
building INTI Institutional Repository
collection Online Access
description Polyurethane-based vegetable oil coatings have been used in the past few decades considering the use of petrochemical-based raw materials is a non-renewable material. Vegetable oils used such as soybean oil, palm oil, and castor oil. They have lower environmental impacts, easy availability and biodegradation. In this study, polyurethane synthesis was carried out using the prepolymer method using the reaction of TDI with polyols based on castor oil. To provide anti-microbial properties of polyurethane, a composite method of polyurethane with chitosan was carried out. Whereas to provide heat resistance properties in polyurethane bentonite is added to polyurethane. Polyurethane/bentonite/nanocomposite chitosan was analyzed using the Fourier Transform Infrared Spectra (FTIR) to determine the microstructure of chemical compounds, Thermal Gravimetric Analysis (TGA) for viewing polyurethane/bentonite/chitosan heat resistance, and Scanning Electron Microscope (SEM) to see the morphology of polyurethane/bentonite/chitosan. FTIR analysis have shown the formation of hydroxyl groups in the compound epoxide castor oil, the reaction lasts for 2.5 hours at 50 °C as evidenced by the absorption of OH wave numbers which widens at 3500 cm−1, the hydroxy group formed is the hydroxy group on C atoms secondary, and bentonite NH 3450 cm−1, chitosan cluster C = O urethane widened at 1772 cm−1. TGA analysis have pure polyurethane begins to decrease in mass at 246 °C, while polyurethane with the addition of filler decreases mass at 342 °C.
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publishDate 2020
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spelling intimal-14322020-09-29T06:17:31Z http://eprints.intimal.edu.my/1432/ Making Polyurethanes from castor oil with addition of Bentonite and Chitosan as coating paints on eco-friendly medical device applications T., Rihayat Suryani, . S., Riskina J.P., Sirega J., Jaafar T., Cionita* Fitria, . T Technology (General) TA Engineering (General). Civil engineering (General) Polyurethane-based vegetable oil coatings have been used in the past few decades considering the use of petrochemical-based raw materials is a non-renewable material. Vegetable oils used such as soybean oil, palm oil, and castor oil. They have lower environmental impacts, easy availability and biodegradation. In this study, polyurethane synthesis was carried out using the prepolymer method using the reaction of TDI with polyols based on castor oil. To provide anti-microbial properties of polyurethane, a composite method of polyurethane with chitosan was carried out. Whereas to provide heat resistance properties in polyurethane bentonite is added to polyurethane. Polyurethane/bentonite/nanocomposite chitosan was analyzed using the Fourier Transform Infrared Spectra (FTIR) to determine the microstructure of chemical compounds, Thermal Gravimetric Analysis (TGA) for viewing polyurethane/bentonite/chitosan heat resistance, and Scanning Electron Microscope (SEM) to see the morphology of polyurethane/bentonite/chitosan. FTIR analysis have shown the formation of hydroxyl groups in the compound epoxide castor oil, the reaction lasts for 2.5 hours at 50 °C as evidenced by the absorption of OH wave numbers which widens at 3500 cm−1, the hydroxy group formed is the hydroxy group on C atoms secondary, and bentonite NH 3450 cm−1, chitosan cluster C = O urethane widened at 1772 cm−1. TGA analysis have pure polyurethane begins to decrease in mass at 246 °C, while polyurethane with the addition of filler decreases mass at 342 °C. IOP Publishing 2020 Article PeerReviewed T., Rihayat and Suryani, . and S., Riskina and J.P., Sirega and J., Jaafar and T., Cionita* and Fitria, . (2020) Making Polyurethanes from castor oil with addition of Bentonite and Chitosan as coating paints on eco-friendly medical device applications. IOP Conference Series: Materials Science and Engineering, 788 (012046). ISSN 1757-899X https://iopscience.iop.org/article/10.1088/1757-899X/788/1/012046/
spellingShingle T Technology (General)
TA Engineering (General). Civil engineering (General)
T., Rihayat
Suryani, .
S., Riskina
J.P., Sirega
J., Jaafar
T., Cionita*
Fitria, .
Making Polyurethanes from castor oil with addition of Bentonite and Chitosan as coating paints on eco-friendly medical device applications
title Making Polyurethanes from castor oil with addition of Bentonite and Chitosan as coating paints on eco-friendly medical device applications
title_full Making Polyurethanes from castor oil with addition of Bentonite and Chitosan as coating paints on eco-friendly medical device applications
title_fullStr Making Polyurethanes from castor oil with addition of Bentonite and Chitosan as coating paints on eco-friendly medical device applications
title_full_unstemmed Making Polyurethanes from castor oil with addition of Bentonite and Chitosan as coating paints on eco-friendly medical device applications
title_short Making Polyurethanes from castor oil with addition of Bentonite and Chitosan as coating paints on eco-friendly medical device applications
title_sort making polyurethanes from castor oil with addition of bentonite and chitosan as coating paints on eco-friendly medical device applications
topic T Technology (General)
TA Engineering (General). Civil engineering (General)
url http://eprints.intimal.edu.my/1432/
http://eprints.intimal.edu.my/1432/