Issue 38, 2019

Selective synthesis, reactivity and luminescence of unsymmetrical bis-cyclometalated Pt(iv) complexes

Abstract

Pt(II) complexes cis-N,N-[PtCl(C^N)(N′^C′H)], where C^N represents a monocyclometalated 2,6-diaryl- or 2-arylpyridine ligand and N′^C′H is an N-coordinated 2-arylpyridine, are selectively obtained from bridge-cleavage reactions of dimers [Pt2(μ-Cl)2(C^N)2] with excess N′^C′H at room temperature; isolation and characterization of derivatives of this kind is reported for the first time. Oxidation with PhICl2 affords Pt(IV) complexes [PtCl2(C^N)(C′^N′)], bearing two cyclometalated ligands in an unsymmetrical arrangement. The abstraction of the two chlorides using AgOTf at 120 °C in the presence of an additional 2-arylpyridine ligand leads to mer isomers of tris-cyclometalated Pt(IV) complexes if C^N derives from a 2-arylpyridine, whereas it results in a reductive C–C coupling if C^N is a monocyclometalated 2,6-diarylpyridine. Complexes [PtCl2(C^N)(C′^N′)] show phosphorescence in frozen PrCN glasses arising from essentially 3LC excited states localized on the cyclometalated ligand with the lowest π–π* transition energy. The combined photophysical data and computational results substantiate a variable degree of MLCT admixture into the emitting state depending on the atom trans to the metalated carbon of the chromophoric ligand (Cl or N), which has an appreciable effect on the characteristics of the observed luminescence.

Graphical abstract: Selective synthesis, reactivity and luminescence of unsymmetrical bis-cyclometalated Pt(iv) complexes

Supplementary files

Article information

Article type
Paper
Submitted
07 Jun 2019
Accepted
10 Sep 2019
First published
18 Sep 2019

Dalton Trans., 2019,48, 14367-14382

Selective synthesis, reactivity and luminescence of unsymmetrical bis-cyclometalated Pt(IV) complexes

Á. Vivancos, D. Poveda, A. Muñoz, J. Moreno, D. Bautista and P. González-Herrero, Dalton Trans., 2019, 48, 14367 DOI: 10.1039/C9DT02431J

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