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Sterically‐Directed Consecutive and Size‐Selective Self‐Assembly of Palladium Diphosphane Complexes with an Ar‐BIAN Ligand: Unexpected Formation of Pentameric and Hexameric Aggregates
Authors:Eszter Holló‐Sitkei  Gábor Szalontai Dr  Isabella Lois Dr  Ágnes Gömöry Dr  Ferenc Pollreisz Dr  László Párkányi Dr  Hershel Jude Dr  Gábor Besenyei Dr
Institution:1. Chemical Research Center, Hungarian Academy of Sciences, 1525 Budapest, POB 17 (Hungary), Fax: (+36)?1‐438‐1143;2. Pannon University, NMR Laboratory, 8201 Veszprém, POB 158 (Hungary);3. University of Utah, Department of Chemistry, Salt Lake City, Utah 84112 (USA);4. Present address: Kalsec Inc., Kalamazoo, MI (USA)
Abstract:The coordination properties of N,N′‐bis4‐(4‐pyridyl)phenyl]acenaphthenequinonediimine (L1) and N,N′‐bis4‐(2‐pyridyl)phenyl]acenaphthenequinonediimine (L2) were investigated in self‐assembly with palladium diphosphane complexes Pd(P^P)(H2O)2](OTf)2 (OTf=triflate) by using various analytical techniques, including multinuclear (1H, 15N, and 31P) NMR spectroscopy and mass spectrometry (P^P=dppp, dppf, dppe; dppp=bis(diphenylphosphanyl)propane, dppf= bis(diphenylphosphanyl)ferrocene, and dppe=bis(diphenylphosphanyl)ethane). Beside the expected trimeric and tetrameric species, the interaction of an equimolar mixture of Pd(dppp)]2+ ions and L1 also generates pentameric aggregates. Due to the E/Z isomerism of L1, a dimeric product was also observed. In all of these species, which correspond to the general formula Pd(dppp)L1]n(OTf)2n (n=2–5), the L1 ligand is coordinated to the Pd center only through the terminal pyridyl groups. Introduction of a second equivalent of the Pd(dppp)]2+ tecton results in coordination to the internal, sterically more encumbered chelating site and induces enhancement of the higher nuclearity components. The presence of higher‐order aggregates (n=5, 6), which were unexpected for the interaction of cis‐protected palladium corners with linear ditopic bridging ligands, has been demonstrated both by mass‐spectrometric and DOSY NMR spectroscopic analysis. The sequential coordination of the Pd(dppp)]2+ ion is attributed to the dissimilar steric properties of the two coordination sites. In the self‐assembled species formed in a 1:1:1 mixture of Pd(dppp)]2+/Pd(dppe)]2+/L1, the sterically more demanding Pd(dppp)]2+ tectons are attached selectively to the pyridyl groups, whereas the more hindered imino nitrogen atoms coordinate the less bulky dppe complexes, thus resulting in a sterically directed, size‐selective sorting of the metal tectons. The propensity of the new ligands to incorporate hydrogen‐bonded solvent molecules at the chelating site was confirmed by X‐ray diffraction studies.
Keywords:aggregation  bridging ligands  phosphane ligands  self‐assembly  steric hindrance
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