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Anja Mudring

Keywords

  • Green chemistry
  • nanoparticles
  • ionic liquids
  • complex intermetallics
  • energy storage
  • materials chemistry
  • X-ray diffraction
  • magnetism
  • relativity

Head of the research group for Intelligent Advanced Materials

Professor Anja Verena Mudring
 

Research in the Mudring group is driven by understanding fundamental structure-property relationships with the aim to design new materials for energy related applications for a sustainable society. In this effort, on the one hand, ionic liquids are investigated as a transformative tool in the synthesis and development of improved materials for energy related applications. On the other hand, complex intermetallics are studied, specifically how the relativistic effect present in heavier metals can be used to uncover new compounds with unusual properties. Both classes of materials, ionic liquids and complex intermetallics, have in common that they are highly modular which offers a unique opportunity to discover the unimagined.


Recent publications

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Wineinger, H., Smetana, V., Hiti, E., Baryshnikov, G., Qu, F., Ågren, H., Mudring, A. V. & Rogers, R. D. (2023). Trapping an Unexpected/Unprecedented Hexanuclear Ce(III) Hydrolysis Product with Neutral 4-Amino-1,2,4-triazole. European Journal of Inorganic Chemistry, 26(31), Article e202300450. https://doi.org/10.1002/ejic.202300450
Wineinger, H. B., Smetana, V., Nayak, A., Qu, F., Mudring, A.-V. & Rogers, R. D. (2022). Accessing Lanthanide Tricyanomethanide Coordination Polymers Using Ionic Liquids. Crystal Growth & Design, 22(4), 2372-2381. https://doi.org/10.1021/acs.cgd.1c01452
Mishra, M. K., Smetana, V., Hiti, E. A., Wineinger, H. B., Qu, F., Mudring, A.-V. & Rogers, R. D. (2022). CO2 capture from ambient air via crystallization with tetraalkylammonium hydroxides. Dalton transactions (Cambridge, England : 2003), 51(46), 17724-17732. https://doi.org/10.1039/d2dt02262a
Kotur, B., Babizhetskyy, V., Smetana, V., Zheng, C. & Mudring, A. V. (2022). Crystal and electronic structures of a new hexagonal silicide Sc38Co144Si97. Journal of Solid State Chemistry, 316, Article 123586. https://doi.org/10.1016/j.jssc.2022.123586