The molecular [Pt33(CO)38]2- nanocluster was obtained from the thermal decomposition of Na2[Pt15(CO)30] in methanol. The reaction of [Pt19(CO)22]4- with acids (1-2 equiv) affords the unstable [Pt19(CO)22]3- trianion, which evolves with time leading eventually to the [Pt40(CO)40]6- hexa-Anion. The total structures of both nanoclusters were determined via single-crystal X-ray diffraction. [Pt33(CO)38]2- displays a defective ccp Pt33 core and shows that localized deformations occur in correspondence of atomic defects to "repair" them. In contrast, [Pt40(CO)40]6- shows a bcc Pt40 core and represents the largest Pt cluster with a body-centered structure. The rich electrochemistry of the two high-nuclearity platinum carbonyl clusters was studied ...
The study of small clusters, particles composed of only a few atoms, is not only interesting becaus...
The new [Pt-13(CO)(12){Cd-5(mu-Br)(5)Br-2(dmf)(3)}(2)](2-) and [Pt-19(CO)(17){Cd-5(mu-Br)(5)Br-3(Me2...
The accurate study of the electron transfer activity of the tetraanion [Pt19(CO)22]4− is presented t...
The molecular [Pt33(CO)38]2- nanocluster was obtained from the thermal decomposition of Na2[Pt15(CO)...
The molecular [Pt<sub>33</sub>(CO)<sub>38</sub>]<sup>2–</sup> nanocluster was obtained from the ther...
The molecular Pt nanocluster [Pt27(CO)31]4- (14-) was obtained by thermal decomposition of [Pt15(CO)...
The molecular Pt nanocluster [Pt27(CO)31]4- (14-) was obtained by thermal decomposition of [Pt15(CO)...
The thermal decomposition of [Pt3n(CO)6n]2- (n=2-10) Chini clusters results in the formation of glob...
Recently, platinum (Pt) clusters have attracted attention as miniaturized fuel-cell redox catalysts....
The reaction between equimolar amounts of Pt(3)(mu-PBu(t)()(2))(3)(H)(CO)(2), Pt(3)()H, and CF(3)SO(...
The reaction between equimolar amounts of Pt3(μ-PBut2)3(H)(CO)2, Pt3H, and CF3SO3H under CO atmosphe...
Heterometallic Chini-type clusters [Pt6−xNix(CO)12]2− (x = 0–6) were obtained by reactions of [Pt6(C...
none5noThe state of art of the chemical, spectroscopic and structural characterization of platinum c...
none9noTo evaluate future applications of metallic clusters in nanoscience and nanotechnology, the e...
The study of small clusters, particles composed of only a few atoms, is not only interesting becaus...
The new [Pt-13(CO)(12){Cd-5(mu-Br)(5)Br-2(dmf)(3)}(2)](2-) and [Pt-19(CO)(17){Cd-5(mu-Br)(5)Br-3(Me2...
The accurate study of the electron transfer activity of the tetraanion [Pt19(CO)22]4− is presented t...
The molecular [Pt33(CO)38]2- nanocluster was obtained from the thermal decomposition of Na2[Pt15(CO)...
The molecular [Pt<sub>33</sub>(CO)<sub>38</sub>]<sup>2–</sup> nanocluster was obtained from the ther...
The molecular Pt nanocluster [Pt27(CO)31]4- (14-) was obtained by thermal decomposition of [Pt15(CO)...
The molecular Pt nanocluster [Pt27(CO)31]4- (14-) was obtained by thermal decomposition of [Pt15(CO)...
The thermal decomposition of [Pt3n(CO)6n]2- (n=2-10) Chini clusters results in the formation of glob...
Recently, platinum (Pt) clusters have attracted attention as miniaturized fuel-cell redox catalysts....
The reaction between equimolar amounts of Pt(3)(mu-PBu(t)()(2))(3)(H)(CO)(2), Pt(3)()H, and CF(3)SO(...
The reaction between equimolar amounts of Pt3(μ-PBut2)3(H)(CO)2, Pt3H, and CF3SO3H under CO atmosphe...
Heterometallic Chini-type clusters [Pt6−xNix(CO)12]2− (x = 0–6) were obtained by reactions of [Pt6(C...
none5noThe state of art of the chemical, spectroscopic and structural characterization of platinum c...
none9noTo evaluate future applications of metallic clusters in nanoscience and nanotechnology, the e...
The study of small clusters, particles composed of only a few atoms, is not only interesting becaus...
The new [Pt-13(CO)(12){Cd-5(mu-Br)(5)Br-2(dmf)(3)}(2)](2-) and [Pt-19(CO)(17){Cd-5(mu-Br)(5)Br-3(Me2...
The accurate study of the electron transfer activity of the tetraanion [Pt19(CO)22]4− is presented t...