Aarhus Universitets segl

Publications

Read more about Bo Brummerstedt Iversen's research career in the CV available on this page where, among other achievements, he has >500 research articles published in high impact journals and an H-Index >60.
For a full listing of publications, you can visit Bo's profiles on Web of ScienceORCID or PURE.


Bo Iversen's research interests revolve around topics in materials chemistry and materials crystallography with emphasis on sustainable materials. He has extensive experience in application of synchrotron and neutron scattering methods.

The research topics include synthesis, characterization and application of energy materials (thermoelectrics, ion batteries, solar energy, fuel cells, catalysis), chemical bonding, electron density analysis, nanoparticles, supercritical fluids, hydrothermal liquefaction (bio-oil).

  • Villum Investigator - Dynamic Crystallography
  • Ca. 500 peer reviewed publications, 7 patents, ~20 popular science articles
  • ~10-15 invited lectures per year at international conferences and universities (total of several hundreds)

Curriculum Vitae

Recent Publications from the Iversen Group

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Shen, Y., Mamakhel, A., Liu, X., Hansen, T. W., Tabanelli, T., Bonincontro, D., Iversen, B. B., Prati, L., Li, Y., Niemantsverdriet, J. W. H., Hutchings, G., Dimitratos, N., Villa, A. & Su, R. (2019). Promotion Mechanisms of Au Supported on TiO2 in Thermal- And Photocatalytic Glycerol Conversion. Journal of Physical Chemistry C, 123(32), 19734-19741. https://doi.org/10.1021/acs.jpcc.9b05475
Hathwar, V. R., Nakamura, A., Kasai, H., Suekuni, K., Tanaka, H. I., Takabatake, T., Iversen, B. B. & Nishibori, E. (2019). Low-Temperature Structural Phase Transitions in Thermoelectric Tetrahedrite, Cu12Sb4S13, and Tennantite, Cu12As4S13. Crystal Growth & Design, 19(7), 3979-3988. https://doi.org/10.1021/acs.cgd.9b00385
Thomas, S. P., Grosjean, A., Flematti, G. R., Karton, A., Sobolev, A. N., Edwards, A. J., Piltz, R. O., Iversen, B. B., Koutsantonis, G. A. & Spackman, M. A. (2019). Investigation of an Unusual Crystal Habit of Hydrochlorothiazide Reveals Large Polar Enantiopure Domains and a Possible Crystal Nucleation Mechanism. Angewandte Chemie - International Edition, 58(30), 10255-10259. https://doi.org/10.1002/anie.201905085