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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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Research
Mechanical switching of molecules on surfaces
Adhesion and friction of particles on model surfaces
Strength and toughness of interfaces at small scales
Sliding of incommensurate interfaces in layered compounds
Plasticity at interfaces in complex compounds
Atomistic simulation of mechanical properties of nanostructures and interfaces
Structure-property relations of individual nanowires
Growth and stability of anisotropic nanoparticles in liquids
Nucleation, growth and degradation of anisotropic nanoparticles
Geometric and electronic structure of metal-organic nanowires
Electrical properties of nanowires and nanowire networks
Local leakage currents in nanoparticulate films
Research