Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (2/2 displayed)

  • 2024The Synergistic Effect of High Intensity Focused Ultrasound on In-vitro Remineralization of Tooth Enamel by Calcium Phosphate Ion Clusters4citations
  • 2019The effect of ethanol on surface of semi-interpenetrating polymer network (IPN) polymer matrix of glass-fibre reinforced composite10citations

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Chart of shared publication
Fawzy, Amr
1 / 23 shared
Yusiharni, Emielda
1 / 1 shared
Rajan, Sheetal Maria
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Shrestha, Barsha
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Saunders, Martin
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Perea-Lowery, Leila
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Basavarajappa, Santhosh
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Vallittu, Pekka K.
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Ramakrishnaiah, Ravikumar
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Al-Kheraif, Abdul Aziz Abdullah
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Matinlinna, Jukka
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2024
2019

Co-Authors (by relevance)

  • Fawzy, Amr
  • Yusiharni, Emielda
  • Rajan, Sheetal Maria
  • Shrestha, Barsha
  • Saunders, Martin
  • Perea-Lowery, Leila
  • Basavarajappa, Santhosh
  • Vallittu, Pekka K.
  • Ramakrishnaiah, Ravikumar
  • Al-Kheraif, Abdul Aziz Abdullah
  • Matinlinna, Jukka
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article

The effect of ethanol on surface of semi-interpenetrating polymer network (IPN) polymer matrix of glass-fibre reinforced composite

  • Perea-Lowery, Leila
  • Basavarajappa, Santhosh
  • Vallittu, Pekka K.
  • Ramakrishnaiah, Ravikumar
  • Al-Kheraif, Abdul Aziz Abdullah
  • Aati, Sultan
  • Matinlinna, Jukka
Abstract

<p>Aim of the study: The aim of this laboratory study was to evaluate the effect of ethanol treatment on the surface roughness (Sa), nano-mechanical properties (NMP) and surface characterization of dental fiber reinforced composite (FRC) with semi-interpenetrating polymer network (IPN).</p><p>Materials and methods: A total of 240 FRC specimens with bisphenol A-glycidyl methacrylate - triethyleneglycol dimethacrylate - Poly (methylmetahcrylate) (bis-GMA-TEGDMA-PMMA) IPN matrix system were light cured for 40 s and divided into 2 groups (L and LH). The group LH was further post-cured by heat at 95 °C for 25 min. The specimens were exposed to 99.9%, 70% and 40% for 15, 30, 60 and 120 s respectively. The treated specimens were evaluated for Sa using non-contact profilometer. NMP were determined using nanoindentation technique and chemical characterization was assessed by Fourier Transform-Infrared (FTIR) spectroscopic analyses. Scanning electron microscopic (SEM) images were made to evaluate the surface topographical changes.</p><p>Results: Both the L and LH group showed changes in the Sa and NMP after being treated by different concentrations of ethanol and at different time interval. The highest Sa was observed with L-group (0.733 μm) treated with 99.9% ethanol for 120 s. Specimens in LH-group treated with 99.9% ethanol for 120 s (1.91 GPa) demonstrated increased nano-hardness, and group treated with 40% ethanol for 120 s demonstrated increased Young's modulus of elasticity (22.90 GPa). FTIR analyses revealed changes in the intensity and bandwidth in both the L and LH groups.</p><p>Conclusion: The present study demonstrated that both light-cured and heat post-cured FRC were prone for ethanol induced alteration in the surface roughness (Sa), nano-mechanical properties (NMP) and chemical characterization. The interphase between the glass fibers and the organic matrix was affected by ethanol. The changes were considerably less in magnitude in the heat post-cured FRC specimens.</p>

Topics
  • surface
  • polymer
  • scanning electron microscopy
  • glass
  • glass
  • laser emission spectroscopy
  • composite
  • hardness
  • nanoindentation
  • elasticity