New compounds Ia-h of the form [(Me2SO)ClPt(HR2DTO ?-S,S Pt)] (HR2DTO = secondary dithiooxamide, with R =11 methyl, ethyl, n-propyl, n-butyl, n-decyl, isopropyl, (R)-1-phenylethyl, or (S)-2-hydroxypropyl; ?-S,S Pt denotes the coordination of the DTO moiety to the Pt atom) have been prepared and used to synthesize platinum(II)/ferrocene dimetallic species IIa-h of formula [(dppf)Pt(HR2DTO ?-S,S Pt)]Cl16 (dppf = 1,1-diphosphinoferrocene). Complexes IIa-e, bearing unbranched groups on the dithiooxamide moiety (i.e., R= methyl, ethyl, n-propyl, n-butyl, or n-decyl groups), selfassemble upon standing to form unprecedented hexameric macrocycles IIIa-e. Compounds IIa-e, IIIa-e, as well as IIf-21 h, have been characterized by a combination of 1H, 13C, 31P NMR spectroscopy and 2D-ROESY and diffusion-ordered. spectroscopy (DOSY) NMR spectroscopic experiments; the latter experiments have been used to calculate the hydrodynamic radius of IIa-e and IIIa-e, assisted by the data provided by the X-ray crystal structure of IIh. Compounds IIIa- e are characterized by the presence of six dppf bridging units occupying the inner rim of the macrocycles and exhibit interesting properties, for example, oxidation of IIIa-e occurs around +0.40 V versus saturated calomel electrode (SCE), whereas oxidation of the type II species occurs at potentials greater than +1.0 V. Oxidation of IIIa-e is explained through a delocalized orbital extending over the six dppf subunits. The reversibility of the self-assembly process is finally demonstrated by alternate addition of acids and bases to the type III compounds.
Self-Assembly of Hexameric Macrocycles from PtII 1 / Ferrocene Dimetallic Subunits - Synthesis, Characterization, Chemical Reactivity, and Oxidation Behavior
Ileana Ielo;
2015
Abstract
New compounds Ia-h of the form [(Me2SO)ClPt(HR2DTO ?-S,S Pt)] (HR2DTO = secondary dithiooxamide, with R =11 methyl, ethyl, n-propyl, n-butyl, n-decyl, isopropyl, (R)-1-phenylethyl, or (S)-2-hydroxypropyl; ?-S,S Pt denotes the coordination of the DTO moiety to the Pt atom) have been prepared and used to synthesize platinum(II)/ferrocene dimetallic species IIa-h of formula [(dppf)Pt(HR2DTO ?-S,S Pt)]Cl16 (dppf = 1,1-diphosphinoferrocene). Complexes IIa-e, bearing unbranched groups on the dithiooxamide moiety (i.e., R= methyl, ethyl, n-propyl, n-butyl, or n-decyl groups), selfassemble upon standing to form unprecedented hexameric macrocycles IIIa-e. Compounds IIa-e, IIIa-e, as well as IIf-21 h, have been characterized by a combination of 1H, 13C, 31P NMR spectroscopy and 2D-ROESY and diffusion-ordered. spectroscopy (DOSY) NMR spectroscopic experiments; the latter experiments have been used to calculate the hydrodynamic radius of IIa-e and IIIa-e, assisted by the data provided by the X-ray crystal structure of IIh. Compounds IIIa- e are characterized by the presence of six dppf bridging units occupying the inner rim of the macrocycles and exhibit interesting properties, for example, oxidation of IIIa-e occurs around +0.40 V versus saturated calomel electrode (SCE), whereas oxidation of the type II species occurs at potentials greater than +1.0 V. Oxidation of IIIa-e is explained through a delocalized orbital extending over the six dppf subunits. The reversibility of the self-assembly process is finally demonstrated by alternate addition of acids and bases to the type III compounds.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.


