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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 C. B. Harlang, Kasper S. Kjær, Karsten Handrup, Fredric Ericson, Hideyuki Tatsuno, Kelsey 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 and Kenneth Wärnmark ()
Additional contact information
Pavel Chábera: Lund University
Yizhu Liu: Center for Analysis and Synthesis (CAS), Lund University
Om Prakash: Center for Analysis and Synthesis (CAS), Lund University
Erling Thyrhaug: Lund University
Amal El Nahhas: Lund University
Alireza Honarfar: Lund University
Sofia Essén: Center for Analysis and Synthesis (CAS), Lund University
Lisa A. Fredin: Lund University
Tobias C. B. Harlang: Lund University
Kasper S. Kjær: Lund University
Karsten Handrup: Lund University
Fredric Ericson: Lund University
Hideyuki Tatsuno: Lund University
Kelsey Morgan: National Institute of Standards and Technology
Joachim Schnadt: Lund University
Lennart Häggström: Uppsala University
Tore Ericsson: Uppsala University
Adam Sobkowiak: Uppsala University
Sven Lidin: Center for Analysis and Synthesis (CAS), Lund University
Ping Huang: Uppsala University
Stenbjörn Styring: Uppsala University
Jens Uhlig: Lund University
Jesper Bendix: University of Copenhagen
Reiner Lomoth: Uppsala University
Villy Sundström: Lund University
Petter Persson: Lund University
Kenneth Wärnmark: Center for Analysis and Synthesis (CAS), Lund University

Nature, 2017, vol. 543, issue 7647, 695-699

Abstract: An iron complex is described that exhibits photoluminescence at room temperature, opening the way to the use of iron-based materials as low-cost, non-toxic light emitters and photosensitizers.

Date: 2017
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DOI: 10.1038/nature21430

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