T
Tore Ericsson
Researcher at Uppsala University
Publications - 98
Citations - 2473
Tore Ericsson is an academic researcher from Uppsala University. The author has contributed to research in topics: Magnetization & Mössbauer spectroscopy. The author has an hindex of 26, co-authored 92 publications receiving 1975 citations.
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Journal ArticleDOI
A low-spin Fe( iii ) complex with 100-ps ligand-to-metal charge transfer photoluminescence
Pavel Chábera,Yizhu Liu,Om Prakash,Erling Thyrhaug,Amal El Nahhas,Alireza Honarfar,Sofia Essén,Lisa A. Fredin,Tobias Harlang,Tobias Harlang,Kasper S. Kjær,Kasper S. Kjær,Karsten Handrup,Fredric Ericson,H. Tatsuno,Kelsey M. Morgan,Joachim Schnadt,Lennart Häggström,Tore Ericsson,Adam Sobkowiak,Sven Lidin,Ping Huang,Stenbjörn Styring,Jens Uhlig,Jesper Bendix,Reiner Lomoth,Villy Sundström,Petter Persson,Kenneth Wärnmark +28 more
TL;DR: The absence of intersystem crossing enables the observation of spin-allowed emission directly to the ground state and could be exploited as an increased driving force in photochemical reactions on surfaces.
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Luminescence and reactivity of a charge-transfer excited iron complex with nanosecond lifetime.
Kasper S. Kjær,Nidhi Kaul,Om Prakash,Pavel Chábera,Nils W. Rosemann,Alireza Honarfar,Olga Gordivska,Lisa A. Fredin,Karl-Erik Bergquist,Lennart Häggström,Tore Ericsson,Linnea Lindh,Arkady Yartsev,Stenbjörn Styring,Ping Huang,Jens Uhlig,Jesper Bendix,Daniel Strand,Villy Sundström,Petter Persson,Reiner Lomoth,Kenneth Wärnmark +21 more
TL;DR: It is shown that octahedral coordination of iron(III) by two mono-anionic facial tris-carbene ligands can markedly suppress such deactivation through low-lying metal-centered states, extending iron’s photoactivity to a nanosecond time frame.
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Nature of the “Z”-phase in layered Na-ion battery cathodes
James W. Somerville,Adam Sobkowiak,Nuria Tapia-Ruiz,Juliette Billaud,Juan G. Lozano,Robert A. House,Leighanne C. Gallington,Tore Ericsson,Lennart Häggström,Matthew R. Roberts,Urmimala Maitra,Peter G. Bruce +11 more
TL;DR: In this paper, the authors demonstrate that the Z phase is most accurately described as a continuously changing intergrowth structure which evolves from P2 to O2 through the OP4 structure as an intermediate.
Journal ArticleDOI
Magnetic dipolar and electric quadrupolar effects on the Mössbauer spectra of magnetite above the Verwey transition
TL;DR: In this paper, it was shown that the temperature variation of the magnetic fields at the two non-equivalent B-sites is proportional to the sublattice magnetization, suggesting that the deviations arise from a variation in band overlap.
Journal ArticleDOI
Structure Characterization and Properties of K-Containing Copper Hexacyanoferrate
Dickson O. Ojwang,Jekabs Grins,Dariusz Wardecki,Mario Valvo,Viktor Renman,Lennart Häggström,Tore Ericsson,Torbjörn Gustafsson,Abdelfattah Mahmoud,Raphaël P. Hermann,Gunnar Svensson +10 more
TL;DR: Infrared, Raman, and Mössbauer spectroscopy studies show that Fe(III) is continuously reduced to Fe(II) with increasing x, accompanied by a decrease of the a-axis of the cubic Fm3̅m unit cell.