A photochromic trinuclear dysprosium( iii ) single-molecule magnet with two distinct relaxation processes
Katarzyna Rogacz, Michał Magott, Sebastian Baś, Magdalena Foltyn, Michał Rams, Dawid Pinkowicz
Abstract
Katarzyna Rogacz, Michał Magott, Sebastian Baś, Magdalena Foltyn, Michał Rams, Dawid Pinkowicz
Abstract
ion and two peripheral ones with an approximate trigonal pyramidal geometry. Thanks to that, 1 shows two types of SMM behavior which is slightly affected by the photoisomerization of the photochromic dtepy bridges. The impact of the photoisomerization on the magnetization dynamics was studied by means of alternating current (AC) magnetic susceptibility measurements for the 'open' and 'closed' forms of the molecules. The changes between the 'open' and 'closed' isomers were further investigated by IR and UV-vis spectroscopy, suggesting the co-existence of the ligand-related photochromism and single-molecule magnet behavior in 1. However, the powder X-ray diffraction studies indicate loss of structural order in the first photoisomerization step preventing in-depth studies.
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ion and two peripheral ones with an approximate trigonal pyramidal geometry. Thanks to that, 1 shows two types of SMM behavior which is slightly affected by the photoisomerization of the photochromic dtepy bridges. The impact of the photoisomerization on the magnetization dynamics was studied by means of alternating current (AC) magnetic susceptibility measurements for the 'open' and 'closed' forms of the molecules. The changes between the 'open' and 'closed' isomers were further investigated by IR and UV-vis spectroscopy, suggesting the co-existence of the ligand-related photochromism and single-molecule magnet behavior in 1. However, the powder X-ray diffraction studies indicate loss of structural order in the first photoisomerization step preventing in-depth studies.
Key concepts: Dysprosium, Photochromism, Relaxation (psychology), Single-molecule magnet, Magnetic relaxation, Magnet, Chemistry, Molecule