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Dorthe Ravnsbæk

Keywords

  • Materials Chemistry
  • Energy Materials
  • Batteries
  • Nano- and atomic-scale structure
  • Electrochemistry
  • in situ and operando methods

Head of the Ravnsbæk Group

Professor Dorthe Ravnsbæk
 

Developing functional materials for sustainable batteries

Research in the Ravnsbæk Group evolves around developing functional materials for sustainable batteries. Within this topic they investigate novel electrode materials for e.g. Li-, Na- and Mg-ion batteries with activities spanning from synthesis over materials characterization to battery fabrication and electrochemical analysis. Furthermore, they are involved in a series of effort exploring methods to stabilize the electrode and the electrodes under high-potential or high mechanical strain conditions.

The focus of the Ravnsbæk Group lies especially on understanding structure property relations of battery materials, that is, how does the electrochemical properties and the battery performance correlate with the nano- and atomic-scale structure of the functional components. To elucidate this they utilize a range of X-ray and neutron based techniques, e.g. X-ray scattering, to probe the structural changes as they occur inside the operating battery during charge and discharge.


Recent publications

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Praetz, S., Johansen, M., Kober, D., Tesic, M., Schlesiger, C., Bomholdt Ravnsbæk, D. & Kanngießer, B. (2025). Operando laboratory XAS on battery materials using the DANOISE cell in a von Hámos spectrometer. Journal of Analytical Atomic Spectrometry, 40(9), 2447-2461. https://doi.org/10.1039/d5ja00155b
Payandeh GharibDoust, S. H., Jensen, T. R. & Bomholdt Ravnsbæk, D. (2015). Novel Bimetallic Borohydrides. Poster session presented at iNANO Autumn School 2014, Denmark.
Payandeh GharibDoust, S., Heere, M., Brighi, M., Sørby, M. H., Cerny, R., Ravnsbæk, D. & Jensen, T. R. (2016). Rare earth bi- and trimetallic borohydrides for hydrogen storage. Poster session presented at iNANO annual meeting 2016, Aarhus, Denmark.