European Journal of Inorganic Chemistry · 2006 · 14 citations · 18 references
Inorganic CompoundInorganic ChemistrySupramolecular AssemblyEngineeringNmr SpectroscopyNative β‐CyclodextrinNatural SciencesCyclodextrin ProductionSupramolecular TrappingCoordination ComplexMolecular BiologyGeneral ApproachMolecular ComplexChemistryInorganic SynthesisBiomolecular EngineeringHost-guest ChemistryH 4
Abstract As shown by 31 P{ 1 H} NMR spectroscopy, addition of the native β‐cyclodextrin or randomly methylated β‐cyclodextrin to an aqueous solution of Cl[Pt{( p ‐ t BuC 6 H 4 )P( m ‐C 6 H 4 SO 3 Na) 2 } 3 Cl] or [Pd{( p ‐ t BuC 6 H 4 )P( m ‐C 6 H 4 SO 3 Na) 2 } 3 ] allows us to generate the phosphane coordinatively unsaturated [Pt{( p ‐ t BuC 6 H 4 )P( m ‐C 6 H 4 SO 3 Na) 2 } 2 Cl 2 ] or [Pd{( p ‐ t BuC 6 H 4 )P( m ‐C 6 H 4 SO 3 Na) 2 } 2 ] complexes, respectively. The existence of second‐sphere coordination adducts between the organometallic complex and the cyclodextrin, in which the local bulkiness around the metallic centre is high, appears to be the essential prerequisite for the dissociation of one ( p ‐ t BuC 6 H 4 )P( m ‐C 6 H 4 SO 3 Na) 2 phosphane ligand from the metal centre. (© Wiley‐VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2006)
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Qiao‐Sheng Hu, Yong Lu, Zhen‐Yu Tang et al. · Journal of the American Chemical Society · 2003 · 97 citations
Efficient Ligands, Inorganic Chemistry, Chemical Engineering +13
Laura W. Francisco, Debra A. Moreno, Jim D. Atwood · Organometallics · 2001 · 90 citations
Materials Science, Inorganic Chemistry, Chemical Engineering +14