Tuning excited states of bipyridyl platinum(II) chromophores with π-bonded catecholate organometallic ligands: synthesis, structures, TD-DFT calculations, and photophysical properties.

Inorg Chem

Sorbonne Universités, UPMC Univ Paris 06, Université Pierre et Marie Curie and ‡CNRS, Centre National de la Recherche Scientifique, Institut Parisien de Chimie Moléculaire (IPCM) UMR 8232 , 4 place Jussieu, 75252 Paris cedex 05, France.

Published: July 2014

AI Article Synopsis

  • A series of bipyridyl Pt(II) complexes were synthesized and characterized, incorporating different π-bonded catecholate ligands from various metals.
  • The solid-state structure of these complexes varies based on the metal in the catecholate, resulting in differences in interactions, such as the presence of Pt···Pt and π-π interactions in some cases.
  • Photophysical studies revealed that the new complexes show strong luminescence at low temperatures, contrasting with a previously known Pt(bpy) compound that exhibits weak luminescence, with theoretical studies helping to explain this luminescent behavior.

Article Abstract

A series of bipyridyl (bpy) Pt(II) complexes with π-bonded catecholate (cat) [(bpy)Pt(LM)][BF4]n (2-5) (LM = Cp*Rh(cat), n = 2; Cp*Ir(cat), n = 2; Cp*Ru(cat), n = 1; and (C6H6)Ru(cat), n = 2) were prepared and fully characterized. The molecular structures of the four compounds were determined and showed that the solid-state packing is different and dependent on the π-bonded catecholate unit. For instance, while the (bpy)Pt(II) complexes 2 and 3 with rhodium and iridium catecholates did not show any Pt···Pt interactions those with the ruthenium catecholates 4 and 5 showed the presence of Pt···Pt and π-π interactions among individual units and generated one- and two-dimensional supramolecular chains. The photophysical properties of these compounds 2-5 were investigated and showed that all compounds are luminescent at low temperature, in contrast to the well-known parent compound [(C6H4O2)Pt(bpy)] (1), which is weakly luminescent at 77 K. Time-dependent density functional theory studies are advanced to explain this difference in behavior and to highlight the role of the π-bonded catecholate system.

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Source
http://dx.doi.org/10.1021/ic500232wDOI Listing

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