none8noThe reaction of [Co(CO)4 ]− (1) with M(I) compounds (M = Cu, Ag, Au) was reinvestigated unraveling an unprecedented case of polymerization isomerism. Thus, as previously reported, the trinuclear clusters [M{Co(CO)4 }2 ]− (M = Cu, 2; Ag, 3; Au, 4) were obtained by reacting 1 with M(I) in a 2:1 molar ratio. Their molecular structures were corroborated by single-crystal X-ray diffraction (SC-XRD) on isomorphous [NEt4 ][M{Co(CO)4 }2 ] salts. [NEt4](3)represented the first structural characterization of 3. More interestingly, changing the crystallization conditions of solutions of 3, the hexanuclear cluster [Ag2 {Co(CO)4 }4 ]2− (5) was obtained in the solid state instead of 3. Its molecular structure was determined by SC-XRD as Na2 (5)·C4...
Typescript (photocopy).This study concentrates on the reactivity, characterization, and synthesis of...
Many polynuclear Cu(l) compounds have been synthesized, but the problem whether there is direct or n...
The [Fe(CO)4{M(NHC)}]– (M = Cu, NHC = IMes, 1; M = Cu, NHC = IPr, 2; M = Ag, NHC = IMes, 3; M = Ag, ...
none8noTriangular clusters [MFe(CO) 4 3 ] 3- (M = Cu, 4; Ag, 5; Au, 6) were selectively obtained by...
Triangular clusters [{MFe(CO)4}3]3– (M = Cu, 4; Ag, 5; Au, 6) were selectively obtained by heating F...
Triangular clusters [{MFe(CO)4}3]3– (M = Cu, 4; Ag, 5; Au, 6) were selectively obtained by heating ...
none8noThe Co6C(CO)(12)(AuPPh3)(4) carbide carbonyl cluster was obtained from the reaction of [Co6C(...
This article describes a rare case of cluster core isomerism in a large molecular organometallic nan...
This Thesis aims at presenting the general results achieved during my PhD, that was focused on the s...
Miscellaneous 2-D molecular alloy clusters of the type [MxM′5-xFe4(CO)16]3- (M, M′ = Cu, Ag, Au; M ≠...
The reactions of [HRu3(CO)11]− (1) with M(I) (M = Cu, Ag, and Au) compounds such as [Cu(CH3CN)4][BF4...
The Co<sub>6</sub>C(CO)<sub>12</sub>(AuPPh<sub>3</sub>)<sub>4</sub> carbide carbonyl cluster was ob...
Miscellaneous 2-D molecular alloy clusters of the type [MxM′5-xFe4(CO)16]3- (M, M′ = Cu, Ag, Au; M =...
This article describes a rare case of cluster core isomerism in a large molecular organometallic nan...
Coordination polymers are nowadays intensively studied, for their potential application in nanoelect...
Typescript (photocopy).This study concentrates on the reactivity, characterization, and synthesis of...
Many polynuclear Cu(l) compounds have been synthesized, but the problem whether there is direct or n...
The [Fe(CO)4{M(NHC)}]– (M = Cu, NHC = IMes, 1; M = Cu, NHC = IPr, 2; M = Ag, NHC = IMes, 3; M = Ag, ...
none8noTriangular clusters [MFe(CO) 4 3 ] 3- (M = Cu, 4; Ag, 5; Au, 6) were selectively obtained by...
Triangular clusters [{MFe(CO)4}3]3– (M = Cu, 4; Ag, 5; Au, 6) were selectively obtained by heating F...
Triangular clusters [{MFe(CO)4}3]3– (M = Cu, 4; Ag, 5; Au, 6) were selectively obtained by heating ...
none8noThe Co6C(CO)(12)(AuPPh3)(4) carbide carbonyl cluster was obtained from the reaction of [Co6C(...
This article describes a rare case of cluster core isomerism in a large molecular organometallic nan...
This Thesis aims at presenting the general results achieved during my PhD, that was focused on the s...
Miscellaneous 2-D molecular alloy clusters of the type [MxM′5-xFe4(CO)16]3- (M, M′ = Cu, Ag, Au; M ≠...
The reactions of [HRu3(CO)11]− (1) with M(I) (M = Cu, Ag, and Au) compounds such as [Cu(CH3CN)4][BF4...
The Co<sub>6</sub>C(CO)<sub>12</sub>(AuPPh<sub>3</sub>)<sub>4</sub> carbide carbonyl cluster was ob...
Miscellaneous 2-D molecular alloy clusters of the type [MxM′5-xFe4(CO)16]3- (M, M′ = Cu, Ag, Au; M =...
This article describes a rare case of cluster core isomerism in a large molecular organometallic nan...
Coordination polymers are nowadays intensively studied, for their potential application in nanoelect...
Typescript (photocopy).This study concentrates on the reactivity, characterization, and synthesis of...
Many polynuclear Cu(l) compounds have been synthesized, but the problem whether there is direct or n...
The [Fe(CO)4{M(NHC)}]– (M = Cu, NHC = IMes, 1; M = Cu, NHC = IPr, 2; M = Ag, NHC = IMes, 3; M = Ag, ...