Catalytic performance and antimicrobial activity of Mg(OH)2/MgO colloidal nanoparticles in alkyd resin nanocomposite derived from palm oil

Colloidal Mg(OH)2/MgO nanoparticles were successfully produced in glycerol medium in the presence of hydrazine and subsequently was characterized by XRD. The as-prepared colloidal suspension in glycerol was used for the glycerolysis reaction with palm oil succeeded by polyesterification reaction wit...

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Main Authors: Munusamy, Thurga Devi, Sumaya, Sarmin, Huei, Ruey Ong, Wei, Teng Gan, Chi, Shein Hong, Khan, Maksudur R.
Format: Article
Language:English
Published: Springer Berlin Heidelberg 2019
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/26684/
http://umpir.ump.edu.my/id/eprint/26684/
http://umpir.ump.edu.my/id/eprint/26684/
http://umpir.ump.edu.my/id/eprint/26684/1/Catalytic%20performance%20and%20antimicrobial%20activity%20of%20Mg1.pdf
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spelling ump-266842019-12-03T06:07:16Z http://umpir.ump.edu.my/id/eprint/26684/ Catalytic performance and antimicrobial activity of Mg(OH)2/MgO colloidal nanoparticles in alkyd resin nanocomposite derived from palm oil Munusamy, Thurga Devi Sumaya, Sarmin Huei, Ruey Ong Wei, Teng Gan Chi, Shein Hong Khan, Maksudur R. TP Chemical technology Colloidal Mg(OH)2/MgO nanoparticles were successfully produced in glycerol medium in the presence of hydrazine and subsequently was characterized by XRD. The as-prepared colloidal suspension in glycerol was used for the glycerolysis reaction with palm oil succeeded by polyesterification reaction with phthalic anhydride to prepare the palm oil-based alkyd resin nanocomposite where the Mg(OH)2/MgO nanoparticles catalysed the reactions. The well-dispersion of Mg(OH)2/MgO nanoparticles in the reaction mixture formed a stable suspension which effectively elevated the rate of reaction of both alcoholysis and polyesterification as compared to conventional NaOH catalysed reactions. The optimum reaction condition of the catalysts was observed at 0.04 wt% of Mg(OH)2/MgO. Alkyd resin nanocomposite formation was verified through FTIR, 13C NMR and 1H NMR. The presence of the Mg(OH)2/MgO nanoparticles in the resin matrix significantly improved the antimicrobial activity as evidenced by Kirby–Bauer Method. Thereby, the formulation of Mg(OH)2/MgO nanoparticles in glycerol medium was proved to be an effective route as compared to traditional NaOH homogeneous base catalyzed system. Springer Berlin Heidelberg 2019 Article PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/26684/1/Catalytic%20performance%20and%20antimicrobial%20activity%20of%20Mg1.pdf Munusamy, Thurga Devi and Sumaya, Sarmin and Huei, Ruey Ong and Wei, Teng Gan and Chi, Shein Hong and Khan, Maksudur R. (2019) Catalytic performance and antimicrobial activity of Mg(OH)2/MgO colloidal nanoparticles in alkyd resin nanocomposite derived from palm oil. Polymer Bulletin. pp. 1-16. ISSN 0170-0839(Print); 1436-2449(Online) https://doi.org/10.1007/s00289-019-02993-8 https://doi.org/10.1007/s00289-019-02993-8
repository_type Digital Repository
institution_category Local University
institution Universiti Malaysia Pahang
building UMP Institutional Repository
collection Online Access
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
Munusamy, Thurga Devi
Sumaya, Sarmin
Huei, Ruey Ong
Wei, Teng Gan
Chi, Shein Hong
Khan, Maksudur R.
Catalytic performance and antimicrobial activity of Mg(OH)2/MgO colloidal nanoparticles in alkyd resin nanocomposite derived from palm oil
description Colloidal Mg(OH)2/MgO nanoparticles were successfully produced in glycerol medium in the presence of hydrazine and subsequently was characterized by XRD. The as-prepared colloidal suspension in glycerol was used for the glycerolysis reaction with palm oil succeeded by polyesterification reaction with phthalic anhydride to prepare the palm oil-based alkyd resin nanocomposite where the Mg(OH)2/MgO nanoparticles catalysed the reactions. The well-dispersion of Mg(OH)2/MgO nanoparticles in the reaction mixture formed a stable suspension which effectively elevated the rate of reaction of both alcoholysis and polyesterification as compared to conventional NaOH catalysed reactions. The optimum reaction condition of the catalysts was observed at 0.04 wt% of Mg(OH)2/MgO. Alkyd resin nanocomposite formation was verified through FTIR, 13C NMR and 1H NMR. The presence of the Mg(OH)2/MgO nanoparticles in the resin matrix significantly improved the antimicrobial activity as evidenced by Kirby–Bauer Method. Thereby, the formulation of Mg(OH)2/MgO nanoparticles in glycerol medium was proved to be an effective route as compared to traditional NaOH homogeneous base catalyzed system.
format Article
author Munusamy, Thurga Devi
Sumaya, Sarmin
Huei, Ruey Ong
Wei, Teng Gan
Chi, Shein Hong
Khan, Maksudur R.
author_facet Munusamy, Thurga Devi
Sumaya, Sarmin
Huei, Ruey Ong
Wei, Teng Gan
Chi, Shein Hong
Khan, Maksudur R.
author_sort Munusamy, Thurga Devi
title Catalytic performance and antimicrobial activity of Mg(OH)2/MgO colloidal nanoparticles in alkyd resin nanocomposite derived from palm oil
title_short Catalytic performance and antimicrobial activity of Mg(OH)2/MgO colloidal nanoparticles in alkyd resin nanocomposite derived from palm oil
title_full Catalytic performance and antimicrobial activity of Mg(OH)2/MgO colloidal nanoparticles in alkyd resin nanocomposite derived from palm oil
title_fullStr Catalytic performance and antimicrobial activity of Mg(OH)2/MgO colloidal nanoparticles in alkyd resin nanocomposite derived from palm oil
title_full_unstemmed Catalytic performance and antimicrobial activity of Mg(OH)2/MgO colloidal nanoparticles in alkyd resin nanocomposite derived from palm oil
title_sort catalytic performance and antimicrobial activity of mg(oh)2/mgo colloidal nanoparticles in alkyd resin nanocomposite derived from palm oil
publisher Springer Berlin Heidelberg
publishDate 2019
url http://umpir.ump.edu.my/id/eprint/26684/
http://umpir.ump.edu.my/id/eprint/26684/
http://umpir.ump.edu.my/id/eprint/26684/
http://umpir.ump.edu.my/id/eprint/26684/1/Catalytic%20performance%20and%20antimicrobial%20activity%20of%20Mg1.pdf
first_indexed 2023-09-18T22:41:41Z
last_indexed 2023-09-18T22:41:41Z
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