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GRK 1896

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  • Research
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      • 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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  4. Project area B „Mechanical Properties of Interfaces“
  5. B5: 3D-structure-property relations at grain boundaries

B5: 3D-structure-property relations at grain boundaries

In page navigation: Research
  • Project areas
    • Project area A „Functional Nanostructures and Networks“
    • 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
  • Publications

B5: 3D-structure-property relations at grain boundaries

3D-structure-property relations at grain boundaries

In this new research project, a special focus will be placed on the integration of the previously unavailable methods APT and FIM, which can make important contributions to the understanding of the mechanical behavior of interfaces and their chemistry on the smallest length scales. All equipment required for project implementation including atom probe, FIB for sample preparation and TEM with sample holder for in situ nanomechanics are available at the location. For the 3D FIM experiments, a FIM has been set up in the working group over the past few months. This is also used in collaboration within the GRK for the preparation and characterization of SPM tips. The colleagues will develop suitable data acquisition and evaluation algorithms for the newly built FIM.

Members

Mehrpad Monajem

Mehrpad Monajem, M. Sc.

Chair of General Materials Properties

  • Email: mehrpad.monajem@fau.de
  • Website: http://www.gmp.ww.uni-erlangen.de/
More › Details for Mehrpad Monajem

Supervisors

Peter Felfer

Prof. Dr. Peter Felfer

Chair of General Materials Properties

  • Email: peter.felfer@fau.de
  • Website: https://www.ww1.tf.fau.de/person/felfer-peter/
More › Details for Peter Felfer

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