A manganese(I) complex with a 190 ns metal-to-ligand charge transfer lifetime
Abstract
Abstract Application of photoactive transition metal complexes in lighting, imaging, sensing, and photocatalysis is usually based on the triplet metal-to-ligand charge transfer ( 3 MLCT) excited state of precious metal complexes with 4/5d 6 valence electron configurations. These photocatalysts exhibit excited state lifetimes exceeding hundreds of nanoseconds. Simple 3d 6 transition metal complexes containing abundant metals exhibit lifetimes below 1–2 nanoseconds, and they require multistep ligand syntheses mitigating large-scale implementation. We report that a commercially available bis(imidazolium) pyridine pro-ligand [H 2 pbmi] 2+ and a manganese(II) salt yield the tetracarbene manganese(I) complex [Mn(pbmi) 2 ] + . This complex phosphoresces at room temperature in fluid solution from a 3 MLCT state with a lifetime of 190 ns. In combination with the reversible [Mn(pbmi) 2 ] 2+/+ process, this translates to an excited state capable of reducing benzophenone. Combination of manganese(I) with rigid carbene/pyridine ligands expands key strategies for photoactive 3d 6 metal complexes of earth-abundant metals with 3 MLCT lifetimes rivalling those of precious metals and providing a conceptual starting point for a sustainable photochemistry.
Article Details
Authors (6)
Sandra Kronenberger
Robert Naumann
Department of Chemistry, Johannes Gutenberg University Mainz, Duesbergweg 10-14, Mainz 55128, Germany
Christoph Förster
Department of Chemistry, Johannes Gutenberg University Mainz, Duesbergweg 10-14, Mainz 55128, Germany
Nathan R. East
Jan Klett
Department of Chemistry, Johannes Gutenberg University Mainz, Duesbergweg 10-14, Mainz 55128, Germany
Katja Heinze
Department of Chemistry