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Amide Coupling Reaction for the Synthesis of Bispyridine-based Ligands and Their Complexation to Platinum as Dinuclear Anticancer Agents
Published on: May 28, 2014
Counter-anion effects on the supramolecular structures of tetranuclear PtII2AgI2 complexes with 1,3-dithioglycerol
Yusei Shintani1, Masaki Yoshida1, Zi Lang Goo1
1Department of Chemistry, Graduate School of Science, The University of Osaka, 1-1 Machikaneyama, Toyonaka, Osaka 560-0043, Japan. myoshida@chem.sci.osaka-u.ac.jp.
Abstract:
Precisely controlling the supramolecular structures of photoluminescent metal complexes is important for tuning their solid-state functionality through intermolecular interactions. In this study, we report a platinum(II) complex bearing an aliphatic dithiolate ligand, [Pt(bpy)(Hdtg)] (H3dtg = 1,3-dithioglycerol, bpy = 2,2'-bipyridine), to construct heterometallic complexes. The reaction of [Pt(bpy)(Hdtg)] with various silver(I) salts afforded tetranuclear PtII2AgI2 complexes [Ag2{Pt(bpy)(Hdtg)}2]X2 (X = ClO4, BF4, OTf). Single-crystal X-ray diffraction analysis revealed that the cationic PtII2AgI2 core was essentially identical among the complexes, whereas their supramolecular structures varied depending on the counter-anion. These differences led to distinct metallophilic contacts; in particular, the OTf- salt showed AgI⋯AgI⋯PtII interactions in the solid state. Absorption and emission measurements and density functional theory calculations indicated that the supramolecular interactions influenced the electronic structures and emission properties of the complexes. This study demonstrated that PtII-aliphatic dithiolato complexes can serve as metalloligands for constructing heterometallic assemblies whose solid-state structures are sensitive to counter-anion effects.
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