Dalton Transactions · 2017 · 56 citations · 89 references
A heterotrinuclear [Pt<sub>2</sub>Fe] spin crossover (SCO) complex was developed and synthesized employing a ditopic bridging bpp-alkynyl ligand L and alkynyl coordinated Pt<sup>II</sup> terpy units: [Fe<sup>II</sup>(L-Pt<sup>II</sup>)<sub>2</sub>]<sub>2</sub>(BF<sub>4</sub>)<sub>2</sub> (1). We identified two different types of crystals of 1 which differ in their molecular packing and the number of co-crystallized solvent molecules: 1H (1·3.5CH<sub>2</sub>Cl<sub>2</sub> in P1[combining macron]) and 1L (1·10CH<sub>2</sub>Cl<sub>2</sub> in C2/c); while 1L shows a reversible SCO with a transition temperature of 268 K, the analogous compound 1H does not show any SCO and remains blocked in the HS state. The temperature-dependent magnetic properties of 1H and 1L were complementarily studied by Mössbauer spectroscopy. It has been shown that 1L performs thermal spin crossover and that 1L can be excited to a LIESST state. The vibrational properties of 1 were investigated by experimental nuclear resonance vibrational spectroscopy. The experimentally determined partial density of vibrational states (pDOS) was compared to a DFT-based simulation of the pDOS. The vibrational modes of the different components were assigned and visualized. In addition, the photophysical properties of 1 and L-Pt were investigated in the solid state and in solution. The ultrafast transient absorption spectroscopy of 1 in solution was carried out to study the PL quenching channel via energy transfer from photoexcited Pt<sup>II</sup> terpy units to the Fe<sup>II</sup>-moiety.
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Spin Crossover in a Catenane Supramolecular System
José Antonio Real, Enrique Andrés, M. Carmen Muñoz et al. · Science · 1995 · 625 citations
Magnetic Properties, Engineering, Low-dimensional Magnetism +19