Spin-Crossover-Triggered Linkage Isomerization by the Pedal-like Motion of the Azobenzene Ligand in a Neutral Heteroleptic Iron(III) Complex

The temperature dependence of magnetic susceptibility of [FeIII(azp)­(qsal-Me)]·0.5CH3OH [Hqsal-Me = 5-methyl-N-(8-quinoyl)­salicylaldimine, H2azp = 2,2′-azobisphenol] demonstrated that the spin-crossover (SCO) transition behavior changed from an abrupt transition to consecutive gradual conversions,...

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Veröffentlicht in:Inorganic chemistry 2021-09, Vol.60 (17), p.12735-12739
Hauptverfasser: Miyawaki, Atsuhiro, Eda, Kazuo, Mochida, Tomoyuki, Sakurai, Takahiro, Ohta, Hitoshi, Nakajima, Takahito, Takahashi, Kazuyuki
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Sprache:eng
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Zusammenfassung:The temperature dependence of magnetic susceptibility of [FeIII(azp)­(qsal-Me)]·0.5CH3OH [Hqsal-Me = 5-methyl-N-(8-quinoyl)­salicylaldimine, H2azp = 2,2′-azobisphenol] demonstrated that the spin-crossover (SCO) transition behavior changed from an abrupt transition to consecutive gradual conversions, and moreover, the initial abrupt transition was recovered, keeping the complex at room temperature. The variable-temperature crystal structures revealed that an SCO-triggered linkage isomerization of the azobenzene ligand from one orientation to two disordered orientations and the relaxation from the disordered orientations to the original orientation occurred. The high-spin to low-spin relaxation kinetics and theoretical calculation indicate that the pedal-like motion of the azobenzene ligand can be on in the high-spin state whereas off in the low-spin state.
ISSN:0020-1669
1520-510X
DOI:10.1021/acs.inorgchem.1c02358