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Influence of Novel SrTiO 3 /MnO 2 Hybrid Nanoparticles on Poly(methyl methacrylate) Thermal and Mechanical Behavior.

Houda Taher ElhmaliIvana StajcicAleksandar StajcicIvan PesicMarija JovanovićMiloš PetrovićVesna Radojevic
Published in: Polymers (2024)
While dental poly methyl methacrylate(PMMA) possesses distinctive qualities such as ease of fabrication, cost-effectiveness, and favorable physical and mechanical properties, these attributes alone are inadequate to impart the necessary impact strength and hardness. Consequently, pure PMMA is less suitable for dental applications. This research focused on the incorporation of Strontium titanate (SrTiO 3 -STO) and hybrid filler STO/Manganese oxide (MnO 2 ) to improve impact resistance and hardness. The potential of STO in reinforcing PMMA is poorly investigated, while hybrid filler STO/MnO 2 has not been presented yet. Differential scanning calorimetry is conducted in order to investigate the agglomeration influence on the PMMA glass transition temperature (T g ), as well as the leaching of residual monomer and volatile additives that could pose a threat to human health. It has been determined that agglomeration with 1 wt% loading had no influence on T g , while the first scan revealed differences in evaporation of small molecules, in favor of composite PMMA-STO/MnO 2 , which showed the trapping potential of volatiles. Investigations of mechanical properties have revealed the significant influence of hybrid STO/MnO 2 filler on microhardness and total absorbed impact energy, which were increased by 89.9% and 145.4%, respectively. Results presented in this study revealed the reinforcing potential of hybrid nanoparticles that could find application in other polymers as well.
Keyphrases
  • human health
  • risk assessment
  • hyaluronic acid
  • single cell
  • climate change
  • computed tomography
  • physical activity
  • mental health
  • heavy metals
  • oral health
  • magnetic resonance
  • gas chromatography mass spectrometry