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A linear cobalt(II) complex with maximal orbital angular momentum from a non-Aufbau ground state, , , , , , , , , and . Science, 362 (6421): eaat7319 (2018)Exchange coupling and single molecule magnetism in redox-active tetraoxolene-bridged dilanthanide complexes, , , , , , , , , and 1 other author(s). Chem. Sci., 9 (5): 1221–1230 (February 2018)Chiral, Heterometallic Lanthanide–Transition Metal Complexes by Design, , , , , and . Inorganics, 6 (3): 72 (July 2018)Magnetic Anisotropy in Pentacoordinate Ni-II and Co-II Complexes: Unraveling Electronic and Geometrical Contributions, , , , , , , , , and 1 other author(s). Chemistry - a European journal, 23 (15): 3648-3657 (2017)Luminescent molecular magnets of lanthanides : magneto-structural correlation, , , , and . Molecular magnetic materials : concepts and applications, chapter 11, Wiley-VCH, Weinheim, (2016)Determination of the electronic structure of a dinuclear dysprosium single molecule magnet without symmetry idealization, , , , , , , , , and 7 other author(s). Chemical Science, 10 (7): 2101-2110 (2019)Chemical tunnel-splitting-engineering in a dysprosium-based molecular nanomagnet, , , , , , , , , and 10 other author(s). Nature Communications, (2018)Chiral, Heterometallic Lanthanide–Transition Metal Complexes by Design, , , , , and . Inorganics, 6 (3): 72 (2018)Chiral, Heterometallic Lanthanide-Transition Metal Complexes by Design, , , , , and . Inorganics, 6 (3): 72 (2018)Determination of magnetic anisotropy in the LnTRENSAL complexes (Ln=Tb,Dy,Er) by cantilever magnetometry, , , , and . Inorganic chemistry, 55 (6): 3090-3092 (2015)