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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Materials Map under construction

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 (1/1 displayed)

  • 2017Comparative Assessment of Biocidal Activity of Different RGO/Ceramic Oxide-Ag Nanocomposites6citations

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Chart of shared publication
Ziemkowska, Wanda
1 / 18 shared
Karwowska, Ewa
1 / 17 shared
Olszyna, Andrzej
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Pląsek, Aneta
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Wojciechowski, Tomasz
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Jastrzębska, Agnieszka
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Chart of publication period
2017

Co-Authors (by relevance)

  • Ziemkowska, Wanda
  • Karwowska, Ewa
  • Olszyna, Andrzej
  • Pląsek, Aneta
  • Wojciechowski, Tomasz
  • Jastrzębska, Agnieszka
OrganizationsLocationPeople

article

Comparative Assessment of Biocidal Activity of Different RGO/Ceramic Oxide-Ag Nanocomposites

  • Ziemkowska, Wanda
  • Derecka, Adrianna
  • Karwowska, Ewa
  • Olszyna, Andrzej
  • Pląsek, Aneta
  • Wojciechowski, Tomasz
  • Jastrzębska, Agnieszka
Abstract

The aim of this study was to compare the bioactivity of RGO/ceramic oxide-Ag nanocomposites. Different ceramic oxides (MexOy) i.e.: Al2O3, TiO2, SiO2 and ZnO2 were in situ co-deposited with Ag nanoparticles on the surface of RGO resulting in the formation of a nanocomposite structure of stacked flakes. The results of our investigations indicate that it is possible to obtain the targeted biocidal properties of the RGO/Ag system by choosing the appropriate ceramic oxide as a modificator of Ag nanoparticles. The strongest antimicrobial properties against E. coli, S. aureus and Bacillus sp. strains were achieved for RGO/SiO2-Ag nanocomposite whereas for Sarcina sp. bacteria the most effective biocide was RGO/TiO2-Ag nanocomposite.

Topics
  • nanoparticle
  • nanocomposite
  • impedance spectroscopy
  • surface
  • ceramic
  • bioactivity