A Room-Temperature Verwey-type Transition in Iron Oxide, Fe 5 O 6

Functional oxides whose physicochemical properties may be reversibly changed at standard conditions are potential candidates for the use in next-generation nanoelectronic devices. To date, vanadium dioxide (VO ) is the only known simple transition-metal oxide that demonstrates a near-room-temperatur...

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Veröffentlicht in:Angewandte Chemie International Edition 2020-03, Vol.59 (14), p.5632-5636
Hauptverfasser: Ovsyannikov, Sergey V, Bykov, Maxim, Medvedev, Sergey A, Naumov, Pavel G, Jesche, Anton, Tsirlin, Alexander A, Bykova, Elena, Chuvashova, Irina, Karkin, Alexander E, Dyadkin, Vadim, Chernyshov, Dmitry, Dubrovinsky, Leonid S
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Sprache:eng
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Zusammenfassung:Functional oxides whose physicochemical properties may be reversibly changed at standard conditions are potential candidates for the use in next-generation nanoelectronic devices. To date, vanadium dioxide (VO ) is the only known simple transition-metal oxide that demonstrates a near-room-temperature metal-insulator transition that may be used in such appliances. In this work, we synthesized and investigated the crystals of a novel mixed-valent iron oxide with an unconventional Fe O stoichiometry. Near 275 K, Fe O undergoes a Verwey-type charge-ordering transition that is concurrent with a dimerization in the iron chains and a following formation of new Fe-Fe chemical bonds. This unique feature highlights Fe O as a promising candidate for the use in innovative applications. We established that the minimal Fe-Fe distance in the octahedral chains is a key parameter that determines the type and temperature of charge ordering. This model provides new insights into charge-ordering phenomena in transition-metal oxides in general.
ISSN:1433-7851
1521-3773
DOI:10.1002/anie.201914988