Luminescent Platinum(II) Complexes with a Tridentate Caffeine‐Based NHC‐Pincer Ligand: Synthesis, Electrochemistry and Photophysics

Author:

Bysewski Oliver12,Klosterhalfen Niklas34,Jordan Rose5ORCID,Kletsch Lukas5ORCID,Winter Andreas12ORCID,Klein Axel5ORCID,Dietzek‐Ivanšić Benjamin34ORCID,Schubert Ulrich S.12ORCID

Affiliation:

1. Laboratory of Organic and Macromolecular Chemistry (IOMC) Friedrich Schiller University Jena Humboldtstr. 10 07743 Jena Germany

2. Center for Energy and Environmental Chemistry Jena (CEEC Jena) Friedrich Schiller University Jena Philosophenweg 7a 07743 Jena Germany

3. Institute for Physical Chemistry (IPC) Friedrich Schiller University Jena Helmholtzweg 4 07743 Jena Germany

4. Research Department Functional Interfaces Leibniz Institute of Photonic Technology (Leibniz-IPHT) Albert-Einstein-Str. 9 07745 Jena Germany

5. Institute for Inorganic Chemistry Department of Chemistry and Biochemistry Faculty of Mathematics and Natural Sciences University of Cologne Greinstr. 6 50939 Cologne Germany

Abstract

AbstractA strategy of “greening up” Pt(II) luminophores is presented. For this purpose, caffeine, as a renewable alkaloid and precursor for an N‐heterocyclic carbene (NHC), is incorporated into a tridentate, pincer‐type ligand framework. A series of luminescent Pt(II) complexes, containing the tridentate bis‐NHC ligand and an arylacetylide ligand is reported. The complexes’ electrochemistry and photophysics strongly depend on the electronic nature of the substituent on arylacetylide ligand. The use of bio‐derived ligands represents one important approach to make emitters or sensitizers eco‐friendlier by coming back to cheap, abundant and non‐harmful staring materials for their synthesis.

Publisher

Wiley

Subject

Inorganic Chemistry

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