2017
DOI: 10.1021/acs.inorgchem.7b01952
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Synthesis, Characterization, and Properties of Iron(II) Spin-Crossover Molecular Photoswitches Functioning at Room Temperature

Abstract: Spin-crossover molecular switches [Fe(HB(pz))L] (L = novel phenanthroline-based ligands featuring photochromic diarylethene units; pz = 1-pyrazolyl) were synthesized and thoroughly characterized by variable-temperature X-ray crystallography, Mössbauer spectroscopy, and magnetic measurements. The effect of substituents introduced into the phenanthroline backbone (L2) and into the photochromic diarylethene unit (L3) on photophysical properties of metal-free ligands and spin-crossover iron(II) complexes 2 and 3, … Show more

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Cited by 41 publications
(49 citation statements)
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“…These results are in line with previously reported absorption properties of 5,6‐bis‐thiophene‐phenanthrolines, accessible via Suzuki‐coupling reactions (L1–4) which have been performed in benzene and acetonitrile, respectively (Table and Scheme ), , ,…”
Section: Resultssupporting
confidence: 92%
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“…These results are in line with previously reported absorption properties of 5,6‐bis‐thiophene‐phenanthrolines, accessible via Suzuki‐coupling reactions (L1–4) which have been performed in benzene and acetonitrile, respectively (Table and Scheme ), , ,…”
Section: Resultssupporting
confidence: 92%
“…This is in contrast with literature value for related compounds favoring the parallel orientation with 75 % Taking the less steric demand of thiophene moieties within 2 into account, the measured torsion angles of the two thiophenes with 65.31° and 67.60° with respect to the phenanthroline plane seem reasonable, which is very similar to previously reported thiophene‐substituted phenanthrolines. Interestingly, in case of even more sterically demanding dimethyl‐substituted thiophenes torsion angles lie in the same region , …”
Section: Resultsmentioning
confidence: 94%
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“…Due to lability of their electronic shells transition metal coordination compounds with switchable magnetic properties represent key substructures of molecular electronics and spintronics devices . They have a good application prospect as single‐ion and single‐molecule magnets, molecular switches, sensors, and logical elements of quantum computers . Among the magnetically active systems, a special place is belonged to the transition metal complexes with redox‐active (noninnocent ) ligands, in which proximity of energy levels of the metal valence d ‐electrons and frontier molecular orbitals of the ligand creates opportunities for low‐energy barrier intramolecular electronic transfers (IETs).…”
Section: Introductionmentioning
confidence: 99%