Winkelmann, F.; Albert, R.; Felderhoff, M. Synthesis and Effective Thermal Conductivity Measurements of Hollow Mesoporous SiO2 Spheres for Heat‐Insulating Applications. Energy Technology2021, 9, 2001048.
Albert, R.; Wagner, C.; Urbanczyk, R.; Felderhoff, M. Cycle Stability of the Effective Thermal Conductivity of Nickel‐Activated Magnesium Hydride Powder under Operating Conditions. Energy Technology2020, 8, 2000356.
Albert, R.; Urbanczyk, R.; Felderhoff, M. Thermal Conductivity Measurements of Magnesium Hydride Powder Beds under Operating Conditions for Heat Storage Applications. International Journal of Hydrogen Energy2019, 44, 29273–29281.
Manickam, K.; Mistry, P.; Walker, G.; Grant, D.; Buckley, C. E.; Humphries, T. D.; Paskevicius, M.; Jensen, T.; Albert, R.; Peinecke, K.; Felderhoff, M. Future Perspectives of Thermal Energy Storage with Metal Hydrides. International Journal of Hydrogen Energy2019, 44, 7738–7745.
Yartys, V. A.; Lototskyy, M. V.; Akiba, E.; Albert, R.; Antonov, V. E.; Ares, J. R.; Baricco, M.; Bourgeois, N.; Buckley, C. E.; Belosta von Colbe, J. M.; Crivello, J.-C.; Cuevas, F.; Denys, R. V.; Dornheim, M.; Felderhoff, M.; Grant, D. M.; Hauback, B. C.; Humphries, T. D.; Jacob, I.; Jensen, T. R.; de Jongh, P. E.; Joubert, J.-M.; Kuzovnikov, M. A.; Latroche, M.; Paskevicius, M.; Pasquini, L.; Popilevsky, L.; Skripnyuk, V. M.; Rabkin, E.; Sofianos, M. V.; Stuart, A.; Walker, G.; Wang, H.; Webb, C. J.; Zhu, M. Magnesium Based Materials for Hydrogen Based Energy Storage: Past, Present and Future. International Journal of Hydrogen Energy2019, 44, 7809–7859.
Albert, R. Thermal Conductivity Measurements of Metal Hydrides as High Temperature Heat Storage Materials under Operating Conditions. PhD Thesis, Universität Duisburg-Essen, Duisburg-Essen, 2019.
Shalini Yadav, a postdoctoral researcher at the Max-Planck-Institut für Kohlenforschung, has received the Alexander von Humboldt Fellowship to advance her computational chemistry research on enzymes.