| Literature DB >> 30498167 |
Kasper Skov Kjær1, Nidhi Kaul2, Om Prakash3, Pavel Chábera1, Nils W Rosemann1, Alireza Honarfar1, Olga Gordivska3, Lisa A Fredin4, Karl-Erik Bergquist3, Lennart Häggström5, Tore Ericsson5, Linnea Lindh1, Arkady Yartsev1, Stenbjörn Styring2, Ping Huang2, Jens Uhlig1, Jesper Bendix6, Daniel Strand3, Villy Sundström7, Petter Persson8, Reiner Lomoth9, Kenneth Wärnmark10.
Abstract
Iron's abundance and rich coordination chemistry are potentially appealing features for photochemical applications. However, the photoexcitable charge-transfer states of most iron complexes are limited by picosecond or subpicosecond deactivation through low-lying metal-centered states, resulting in inefficient electron-transfer reactivity and complete lack of photoluminescence. In this study, we show that octahedral coordination of iron(III) by two mono-anionic facial tris-carbene ligands can markedly suppress such deactivation. The resulting complex [Fe(phtmeimb)2]+, where phtmeimb is {phenyl[tris(3-methylimidazol-1-ylidene)]borate}-, exhibits strong, visible, room temperature photoluminescence with a 2.0-nanosecond lifetime and 2% quantum yield via spin-allowed transition from a doublet ligand-to-metal charge-transfer (2LMCT) state to the doublet ground state. Reductive and oxidative electron-transfer reactions were observed for the 2LMCT state of [Fe(phtmeimb)2]+ in bimolecular quenching studies with methylviologen and diphenylamine.Entities:
Year: 2018 PMID: 30498167 DOI: 10.1126/science.aau7160
Source DB: PubMed Journal: Science ISSN: 0036-8075 Impact factor: 47.728