Temperature-Driven Self-Doping in Magnetite

Publication date

2021-10-29

Authors

Elnaggar, HebatallaISNI 0000000492853202
Graas, Silvester
Lafuerza, Sara
Detlefs, Blanka
Tabiś, Wojciech
Gala, Mateusz A.
Ismail, Ahmed S MISNI 0000000506754070
van der Eerden, AdISNI 0000000397157444
Sikora, Marcin
Honig, Jurgen M.

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Abstract

Magnetite is one of the most fascinating materials exhibiting the enigmatic first-order Verwey transition which is conventionally manipulated through chemical doping. Here, we show that heating magnetite results in a spontaneous charge reordering and, consequently, a hole self-doping effect at the octahedral sublattice. Core-level x-ray spectroscopy measurements combined with theory uncovers that there are three regimes of self-doping that map the temperature dependence of the electrical conductivity and magnetism up to the Curie temperature. Our results provide an elegant analogy between the effect of chemical doping and temperature-driven self-doping on trimerons in magnetite.

Keywords

Taverne, General Physics and Astronomy

Citation

Elnaggar, H, Graas, S, Lafuerza, S, Detlefs, B, Tabiś, W, Gala, M A, Ismail, A, van der Eerden, A, Sikora, M, Honig, J M, Glatzel, P & de Groot, F 2021, 'Temperature-Driven Self-Doping in Magnetite', Physical Review Letters, vol. 127, no. 18, 186402, pp. 1-5. https://doi.org/10.1103/physrevlett.127.186402