Phosphorescent cyclometalated platinum() complexes with phenyldiazine N^C ligands

A series of phosphorescent platinum( ii ) complexes containing various phenyldiazine-type bidentate N^C ligands have been successfully synthesized and characterized. Structural modifications have been made to bidentate cyclometalating ligands regarding the nature of the diazine ring (pyrimidine, pyr...

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Veröffentlicht in:Dalton transactions : an international journal of inorganic chemistry 2023-02, Vol.52 (7), p.1927-1938
Hauptverfasser: Hruzd, Mariia, Kahlal, Samia, le Poul, Nicolas, Wojcik, Laurianne, Cordier, Marie, Saillard, Jean-Yves, Rodríguez-López, Julián, Robin-le Guen, Françoise, Gauthier, Sébastien, Achelle, Sylvain
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Sprache:eng
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Zusammenfassung:A series of phosphorescent platinum( ii ) complexes containing various phenyldiazine-type bidentate N^C ligands have been successfully synthesized and characterized. Structural modifications have been made to bidentate cyclometalating ligands regarding the nature of the diazine ring (pyrimidine, pyrazine and quinazoline), the substituent groups at the C4 position of the pyrimidine ring (OCH 3 , CF 3 ) and the EDGs at the para position of the Pt atom (OCH 3 , Ph, NPh 2 , carbazol). In addition, the electronic properties of the azaheterocyclic ancillary ligand have been modulated in this series of complexes (pyridine, 4-methoxy-pyridine or pyrimidine). X-ray diffraction studies have been performed on three complexes, revealing Pt( ii ) ions in a distorted square-planar geometrical environment with no Pt( ii ) Pt( ii ) interactions but with moderate π-π interactions in the solid-state structure. Electrochemical and computational studies suggest a ligand-centered reduction on the diazine ligands with, in some cases, additional contribution from the azaheterocyclic ancillary ligand, whereas oxidation occurs on the Pt-phenyl ring substituent moieties. All complexes exhibit phosphorescence emission ranging from green to red/near-infrared, both in solution and in the solid state. Complexes bearing a 2-(3-methoxyphenyl)pyrimidine ligand show the best PLQY of the series, up to 52% in a CH 2 Cl 2 solution and 20% in the solid state. Furthermore, the solid state PLQY of one of the near-infrared emitting phenylquinazoline complex has been found to be 6%. Pt( ii ) complexes bearing phenyldiazine N^C ligands as well as chloride and azaheterocyclic ancillary ligands were successfully modified, yielding interesting luminophores with a wide range of emission color.
ISSN:1477-9226
1477-9234
DOI:10.1039/d2dt03690h