4.2 Article

Preparation and Characterization of Novel Glycidyl Methacrylate/Clay Nanocomposites

期刊

SCIENCE OF SINTERING
卷 54, 期 2, 页码 1-12

出版社

INT INST SCIENCE SINTERING (I I S S)

关键词

GMA-co-EGDMA Nanocomposites; Clay nanofillers; Morphology; Thermal properties; Porous structure

资金

  1. Ministry of Education, Science and Technological Development of the Republic of Serbia [451-03-9/2021-14/200026]

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The impact of the type and amounts of nanofiller on the features of GMA-co-EGDMA/OMt nanocomposites was examined. It was found that the addition of clay nanofillers can modify the porosity parameters of the nanocomposites, making them suitable for specific purposes.
The impact of the type and amounts of nanofiller on the features of the glycidyl methacrylate-co-ethylene glycol dimethacrylate (GMA-co-EGDMA)/organomodified montmorillonite (OMt) nanocomposites that were prepared by in situ radical suspension polymerization, was examined. Cloisite 30B and Cloisite 25A were used in this study as nanofillers, in amounts of 2 and 10 wt.%. The structure, morphology, thermal stability and porosity of the initial GMA-co-EGDMA copolymer and their nanocomposites were examined by ATR-FTIR analysis, wide angle X-ray diffraction (XRD), scanning electron microscopy with energy-dispersive X-ray spectroscopy (SEM-EDS), transmission electron microscopy (TEM), thermogravimetric analysis (TG) and mercury porosimetry. It has been established that both clay nanofillers were successfully incorporated into the structure of the initial copolymer, simultaneously on their surface and also on cross-sectional area. Prepared samples with 2 wt.% have predominantly exfoliated, while samples with 10 wt.% have some tactoids-aggregates structure of the OMt layers. Thermogravimetric analysis revealed that after similar to 30 % of degradation, all nanocomposites become more thermal stable than the initial copolymer. The obtained results indicate that porosity parameters can be easily modified with the addition of clay nanofillers and thus prepared nanocomposites adjusted to specific purposes.

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