The Pt (II) dinuclear compounds Pt (CN) (μ-SN) 2 SNH: 2-mercapto-1-methylimidazol; HCN= 1-naphthalen-2-yl-1H-pyrazole (naph-pz, 2a) ; benzo[hquinoline (bzq, 2b) ] were obtained by reaction of the corresponding mononuclear precursor Pt (CN) Cl (SNH) (CN: naph-pz 1a, bzq 1b) with NEt3. Then, 2a and 2b were reacted with aqueous HX (X: Cl, Br, I) in molar ratio 1: 2 to give the corresponding oxidized derivatives Pt (CN) (μ-SN) X2 (X = Cl 3a/b-Cl, Br 3a/b-Br, I 3a/b-I). Their X-ray structures showed shorter Pt–Pt distances in the Pt2 (III) complexes (ca. 2. 7 Å) than in the Pt2 (II) ones (ca. 3. 0 Å) in agreement with the existence of a Pt–Pt bond. The photophysical properties were studied experimentally and theoretically by DFT and TD-DFT. The Pt2 (II) complexes exhibit an emission in the visible region (640 nm 2a, 685 nm 2b) of mostly excimeric 3ππ* and 3MMLCT dσ* (Pt2) → π* (CN) character respectively, while the Pt2 (III) complexes emit in the NIR-II region with maxima reaching up to 1215 nm. The 3XMMCT nature of these emissions justify the influence of both the axial ligand (X) and the overlap of the dz2 orbitals on their energies; the latter being affected by the nature of the CN and the bridging ligand.
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Irene Melendo
Pilar Borja
Sara Fuertes
Inorganic Chemistry
Universidad de Zaragoza
Instituto de Síntesis Química y Catálisis Homogénea
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Melendo et al. (Fri,) studied this question.
www.synapsesocial.com/papers/68c1ce7b54b1d3bfb60f5f6e — DOI: https://doi.org/10.1021/acs.inorgchem.5c03110