Tuning of the phase transition between site selective SCO and intermetallic ET in trimetallic magnetic cyanido-bridged clusters
Author:
Affiliation:
1. Faculty of Chemistry
2. Jagiellonian University
3. 30-387 Krakow
4. Poland
5. Marian Smoluchowski Institute of Physics
6. 30-348 Krakow
Abstract
[Re(CN)8]3− and [W(CN)8]3− compete in shaping the phase transition and magnetic interactions in trimetallic {Fe9[Re(CN)8]6−x[W(CN)8]x} clusters via tuning of the valence electron distribution and mobility.
Funder
Narodowe Centrum Nauki
European Regional Development Fund
Publisher
Royal Society of Chemistry (RSC)
Subject
Inorganic Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2020/DT/D0DT03340E
Reference73 articles.
1. Emerging trends in spin crossover (SCO) based functional materials and devices
2. A Simple Approach for Predicting the Spin State of Homoleptic Fe(II) Tris-diimine Complexes
3. Reversible On–Off Switching of the Hysteretic Spin Crossover in a Cobalt(II) Complex via Crystal to Crystal Transformation
4. Abrupt spin crossover in iron(iii) complexes with aromatic anions
5. Switchable cobalt coordination polymers: Spin crossover and valence tautomerism
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