Studies on the Curing Efficiency and Mechanical Properties of Bis-GMA and TEGDMA Nanocomposites Containing Silver Nanoparticles

Bioactive dimethacrylate composites filled with silver nanoparticles (AgNP) might be used in medical applications, such as dental restorations and bone cements. The composition of bisphenol A glycerolate dimethacrylate (Bis-GMA) and triethylene glycol dimethacrylate (TEGDMA) mixed in a 60/40 wt% rat...

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Main Authors: Izabela Barszczewska-Rybarek, Grzegorz Chladek
Format: Article
Language:English
Published: MDPI AG 2018-12-01
Series:International Journal of Molecular Sciences
Subjects:
Online Access:https://www.mdpi.com/1422-0067/19/12/3937
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spelling doaj-8703b7be56964c3094f200fcf32f89842020-11-24T21:28:53ZengMDPI AGInternational Journal of Molecular Sciences1422-00672018-12-011912393710.3390/ijms19123937ijms19123937Studies on the Curing Efficiency and Mechanical Properties of Bis-GMA and TEGDMA Nanocomposites Containing Silver NanoparticlesIzabela Barszczewska-Rybarek0Grzegorz Chladek1Department of Physical Chemistry and Technology of Polymers, Silesian University of Technology, 44-100 Gliwice, PolandInstitute of Engineering Materials and Biomaterials, Silesian University of Technology, 44-100 Gliwice, PolandBioactive dimethacrylate composites filled with silver nanoparticles (AgNP) might be used in medical applications, such as dental restorations and bone cements. The composition of bisphenol A glycerolate dimethacrylate (Bis-GMA) and triethylene glycol dimethacrylate (TEGDMA) mixed in a 60/40 wt% ratio was filled from 25 to 5000 ppm of AgNP. An exponential increase in resin viscosity was observed with an increase in AgNP concentration. Curing was performed by way of photopolymerization, room temperature polymerization, and thermal polymerization. The results showed that the polymerization mode determines the degree of conversion (<i>DC</i>), which governs the ultimate mechanical properties of nanocomposites. Thermal polymerization resulted in a higher <i>DC</i> than photo- and room temperature polymerizations. The <i>DC</i> always decreased as AgNP content increased. Flexural strength, flexural modulus, hardness, and impact strength initially increased, as AgNP concentration increased, and then decreased at higher AgNP loadings. This turning point usually occurred when the <i>DC</i> dropped below 65% and moved toward higher AgNP concentrations, according to the following order of polymerization methods: photopolymerization &lt; room temperature polymerization &lt; thermal polymerization. Water sorption (WS) was also determined. Nanocomposites revealed an average decrease of 16% in <i>WS</i> with respect to the neat polymer. AgNP concentration did not significantly affect WS.https://www.mdpi.com/1422-0067/19/12/3937silver nanocompositedimethacrylatemolecular structureflexural propertieswater sorption
collection DOAJ
language English
format Article
sources DOAJ
author Izabela Barszczewska-Rybarek
Grzegorz Chladek
spellingShingle Izabela Barszczewska-Rybarek
Grzegorz Chladek
Studies on the Curing Efficiency and Mechanical Properties of Bis-GMA and TEGDMA Nanocomposites Containing Silver Nanoparticles
International Journal of Molecular Sciences
silver nanocomposite
dimethacrylate
molecular structure
flexural properties
water sorption
author_facet Izabela Barszczewska-Rybarek
Grzegorz Chladek
author_sort Izabela Barszczewska-Rybarek
title Studies on the Curing Efficiency and Mechanical Properties of Bis-GMA and TEGDMA Nanocomposites Containing Silver Nanoparticles
title_short Studies on the Curing Efficiency and Mechanical Properties of Bis-GMA and TEGDMA Nanocomposites Containing Silver Nanoparticles
title_full Studies on the Curing Efficiency and Mechanical Properties of Bis-GMA and TEGDMA Nanocomposites Containing Silver Nanoparticles
title_fullStr Studies on the Curing Efficiency and Mechanical Properties of Bis-GMA and TEGDMA Nanocomposites Containing Silver Nanoparticles
title_full_unstemmed Studies on the Curing Efficiency and Mechanical Properties of Bis-GMA and TEGDMA Nanocomposites Containing Silver Nanoparticles
title_sort studies on the curing efficiency and mechanical properties of bis-gma and tegdma nanocomposites containing silver nanoparticles
publisher MDPI AG
series International Journal of Molecular Sciences
issn 1422-0067
publishDate 2018-12-01
description Bioactive dimethacrylate composites filled with silver nanoparticles (AgNP) might be used in medical applications, such as dental restorations and bone cements. The composition of bisphenol A glycerolate dimethacrylate (Bis-GMA) and triethylene glycol dimethacrylate (TEGDMA) mixed in a 60/40 wt% ratio was filled from 25 to 5000 ppm of AgNP. An exponential increase in resin viscosity was observed with an increase in AgNP concentration. Curing was performed by way of photopolymerization, room temperature polymerization, and thermal polymerization. The results showed that the polymerization mode determines the degree of conversion (<i>DC</i>), which governs the ultimate mechanical properties of nanocomposites. Thermal polymerization resulted in a higher <i>DC</i> than photo- and room temperature polymerizations. The <i>DC</i> always decreased as AgNP content increased. Flexural strength, flexural modulus, hardness, and impact strength initially increased, as AgNP concentration increased, and then decreased at higher AgNP loadings. This turning point usually occurred when the <i>DC</i> dropped below 65% and moved toward higher AgNP concentrations, according to the following order of polymerization methods: photopolymerization &lt; room temperature polymerization &lt; thermal polymerization. Water sorption (WS) was also determined. Nanocomposites revealed an average decrease of 16% in <i>WS</i> with respect to the neat polymer. AgNP concentration did not significantly affect WS.
topic silver nanocomposite
dimethacrylate
molecular structure
flexural properties
water sorption
url https://www.mdpi.com/1422-0067/19/12/3937
work_keys_str_mv AT izabelabarszczewskarybarek studiesonthecuringefficiencyandmechanicalpropertiesofbisgmaandtegdmananocompositescontainingsilvernanoparticles
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