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GRK 1896

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  • Research
    • Project areas
      • Project area A „Functional Nanostructures and Networks“
        • A1: Structure-property relations of nanowire networks
        • A2: Degradation and corrosion at nanostructures and metal surfaces
        • A3: Growth, stabilization and ripening of nanoparticles in suspensions
        • A4: Growth and characterization of thin single crystalline layers for molecular electronics
        • A5: Degradation and corrosion of metalic nanostructures and nanostructured metals
        • A6: Hybride semiconductors – metal nanowire composites for opto-electronic devices
      • Project area B „Mechanical Properties of Interfaces“
        • B1: Mechanical switching of molecules on surfaces
        • B2: Structural changes in nanoparticles under pressure loading
        • B3: Mechanical properties and fracture behavior of thin layers
        • B4: 3D-deformation behavior of nanoporous metals and nanocomposites
        • B5: 3D-structure-property relations at grain boundaries
        • B6: Influence of topology, interfaces and local chemical compositions on the deformations behavior of nanostructures
      • Postdoc project Z: NanoCT – Developing and establishing of novel in situ approaches
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International symposium

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International symposium

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Christian Wiktor

Dr. rer. nat. Christian Wiktor

Fromer: Department of Materials Science and Engineering
Former: Institute of Micro- and Nanostructure Research and Center for Nanoanalysis and Electron Microscopy (CENEM)

Room: Room 0.008 Container building
Cauerstr. 6a
91058 Erlangen
Germany
  • Phone number: +49 9131 85-64063
  • Fax number: +49 9131 85-28602
  • Email: christian.wiktor@fau.de
  • Website: http://www.em.techfak.uni-erlangen.de
More › Details for Dr. rer. nat. Christian Wiktor

International Symposium “In Situ Microscopy with Electrons, X-rays and Scanning Probes”

The focus of the satellite symposium “In Situ Microscopy with Electrons, X-rays and Scanning Probes” at the ICEAM2017 lies on recent advances in the direct study of material processes under the influence of external stimuli such as temperature, mechanical strain, magnetic/electric fields and chemical environments and their simulation by scale-bridging modelling techniques. The symposium aims to provide a forum for discussion between researchers from the University of Erlangen-Nürnberg and abroad and distinguished invited experts to promote the interdisciplinary exchange of new developments in the rapidly evolving field of complementary in situ microscopy and simulation techniques. Applicants will have the chance to present their research in form of a talk or poster in the categories of Functional Nanostructures and Networks, Mechanical Properties of Interfaces, and Modelling of Processes at the Nanoscale and to participate in fruitful discussions on cutting-edge nanoscale materials research strongly related to the ICEAM congress.

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