• Navigation überspringen
  • Zur Navigation
  • Zum Seitenende
Organisationsmenü öffnen Organisationsmenü schließen
  • FAUZur zentralen FAU Website
  1. Friedrich-Alexander-Universität
  2. Technische Fakultät
Suche öffnen
  • Campo
  • StudOn
  • FAUdir
  • Stellenangebote
  • Lageplan
  • Hilfe im Notfall
  1. Friedrich-Alexander-Universität
  2. Technische Fakultät

Menu Menu schließen
  • Home
  • Research
    • Publications
    • Project Descriptions
      • Research Areas
        • Research Area A „Nanostructured functional films“
        • Research Area B „Hierarchical functional materials“
        • Research Area C „Data and Processing“
    Portal Call for 13 PhD Positions
  • Activities
    • Qualification Program
    Portal Call for 13 PhD Positions
  • Contact
    • Contact
    Portal Call for 13 PhD Positions
  • People
    • Team of Principle Advisors
    • Mercator Fellows
    Portal Call for 13 PhD Positions
  1. Startseite
  2. Project Descriptions
  3. Research Areas
  4. Research Area B „Hierarchical functional materials“
  5. B2: Correlative Electron Tomography and X-ray NanoCT for Hierarchical Functional Materials

B2: Correlative Electron Tomography and X-ray NanoCT for Hierarchical Functional Materials

Bereichsnavigation: Project Descriptions
  • Research Areas
    • Research Area A "Nanostructured functional films"
    • Research Area B "Hierarchical functional materials"
      • B1: Correlative Atom Probe Tomography and Electron Tomography of Functional Nanostructures
      • B2: Correlative Electron Tomography and X-ray NanoCT for Hierarchical Functional Materials
      • B3: 3D-nanoGPS – Scale-Bridging Tomography for Multimodal 3D Characterization of Hierarchical Materials
      • B4: 3D Structure–Property Correlation in Structurally Colored Supraparticle Assemblies
      • B5: Correlative Electron and X-ray Tomography of Hierarchical Electrodes for Water Electrolysis
    • Research Area C "Data and Processing"

B2: Correlative Electron Tomography and X-ray NanoCT for Hierarchical Functional Materials

Correlative Electron Tomography and X-ray NanoCT for Hierarchical Functional Materials

This doctoral project aims to develop advanced correlative 3D imaging workflows combining electron tomography (ET) and X-ray nano-computed tomography (nanoCT) for comprehensive, cross-scale analysis of hierarchical functional materials. The candidate will integrate ET’s nanoscale structural and chemical precision with nanoCT’s extended field of view to quantitatively characterize nanoparticulate systems such as catalyst layers in PEM electrolyzers. By correlating overlapping 3D datasets from both techniques, the project will establish methods for machine-learning-assisted image registration, segmentation, and super-resolution data fusion. The approach will bridge the gap between nm- and µm-scale structures, enabling analysis of particle networks, interfaces, and porosity across multiple length scales. Selected samples will be studied by ptychographic X-ray CT at synchrotrons to access ultimate spatial and analytical resolution. The developed methods will provide key 3D descriptors linking structure, functionality, and performance for data-driven materials optimization.

Supervisor

ES
Prof. Dr. Erdmann SpieckerE-Mail: erdmann.spiecker@fau.de
Friedrich-Alexander-Universität
Erlangen-Nürnberg

Freyeslebenstraße 1
91058 Erlangen
  • Impressum
  • Datenschutz
  • Barrierefreiheit
  • BlueSky
  • Facebook
  • RSS Feed
  • Xing
  • YouTube
Nach oben