none10siThe reactions of [Pt3n(CO)6n]2-(n = 2-5) homoleptic Chini-type clusters with increasing amounts of 1,3,5-triaza-7-phosphaadamantane (PTA) result in the stepwise substitution of one terminal CO ligand per Pt3triangular unit up to the formation of [Pt3n(CO)5n(PTA)n]2-(n = 2-5). Competition between the nonredox substitution with retention of the nuclearity and the redox fragmentation to afford lower nuclearity heteroleptic Chini-type clusters is observed as a function of the amount of PTA and the nuclearity of the starting cluster. Because of this, [Pt12(CO)20(PTA)4]2-and [Pt15(CO)25(PTA)5]2-are more conveniently obtained via the oxidation of [Pt9(CO)15(PTA)3]2-. All the new species were spectroscopically characterized, and the structu...
The trinuclear platinum cluster [Pt3(μ-PBut2)3(CO)3]CF3SO3 (I) was designed featuring the presence o...
The reactions of [Pt<sub>6</sub>(CO)<sub>12</sub>]<sup>2–</sup> with CH(PPh<sub>2</sub>)<sub>2</sub...
The reaction of the [Pt<sub>3<i>n</i></sub>(CO)<sub>6<i>n</i></sub>]<sup>2–</sup> (<i>n</i> = 2–6) C...
none8noThe reactions of [Pt6(CO)12]2-with CH(PPh2)2(dppm), CH2=C(PPh2)2(P^P), and Fe(C5H4PPh2)2(dppf...
The reactions of [Pt3n(CO)6n]2- (n = 2-4) homoleptic Chini-type clusters with stoichiometric amounts...
The oxidation of [Ph3P(CH2)12PPh3][Pt15(CO)30] with CF3COOH in THF afforded [Ph3P(CH2)12PPh3][Pt18(C...
none4nononeBeatrice Berti, Cristina Femoni, Maria Carmela Iapalucci, Stefano ZacchiniBeatrice Berti,...
none6noThe reaction of the [Pt-3n(CO)(6n)](2-) (n = 2-6) Chini's clusters with increasing amounts of...
none5noIn this microreview, the authors summarize the reactions of [Pt3n(CO)6n]2-(n = 1-10) Chini cl...
The reactions of anionic platinum carbonyl Chini clusters [Pt3n(CO)6n](2-) [n = 2 (1), 3 (2), 4 (3)]...
The reactions of anionic platinum carbonyl Chini clusters [Pt-3n(CO)(6n)](2-) [n = 2 (1), 3 (2), 4 (...
The reactions of [Pt<sub>3<i>n</i></sub>(CO)<sub>6<i>n</i></sub>]<sup>2–</sup> (<i>n</i> = 2–4) homo...
The thermal decomposition of [Pt3n(CO)6n]2- (n=2-10) Chini clusters results in the formation of glob...
The terminal hydride in the (PtPtPtII)-Pt-I-Pt-I triangulo cluster Pt-3(mu-PBu2t)(3)(H)(CO)(2) (1) m...
The terminal hydride in the (PtPtPtII)-Pt-I-Pt-I triangulo cluster Pt-3(mu-PBu2t)(3)(H)(CO)(2) (1) m...
The trinuclear platinum cluster [Pt3(μ-PBut2)3(CO)3]CF3SO3 (I) was designed featuring the presence o...
The reactions of [Pt<sub>6</sub>(CO)<sub>12</sub>]<sup>2–</sup> with CH(PPh<sub>2</sub>)<sub>2</sub...
The reaction of the [Pt<sub>3<i>n</i></sub>(CO)<sub>6<i>n</i></sub>]<sup>2–</sup> (<i>n</i> = 2–6) C...
none8noThe reactions of [Pt6(CO)12]2-with CH(PPh2)2(dppm), CH2=C(PPh2)2(P^P), and Fe(C5H4PPh2)2(dppf...
The reactions of [Pt3n(CO)6n]2- (n = 2-4) homoleptic Chini-type clusters with stoichiometric amounts...
The oxidation of [Ph3P(CH2)12PPh3][Pt15(CO)30] with CF3COOH in THF afforded [Ph3P(CH2)12PPh3][Pt18(C...
none4nononeBeatrice Berti, Cristina Femoni, Maria Carmela Iapalucci, Stefano ZacchiniBeatrice Berti,...
none6noThe reaction of the [Pt-3n(CO)(6n)](2-) (n = 2-6) Chini's clusters with increasing amounts of...
none5noIn this microreview, the authors summarize the reactions of [Pt3n(CO)6n]2-(n = 1-10) Chini cl...
The reactions of anionic platinum carbonyl Chini clusters [Pt3n(CO)6n](2-) [n = 2 (1), 3 (2), 4 (3)]...
The reactions of anionic platinum carbonyl Chini clusters [Pt-3n(CO)(6n)](2-) [n = 2 (1), 3 (2), 4 (...
The reactions of [Pt<sub>3<i>n</i></sub>(CO)<sub>6<i>n</i></sub>]<sup>2–</sup> (<i>n</i> = 2–4) homo...
The thermal decomposition of [Pt3n(CO)6n]2- (n=2-10) Chini clusters results in the formation of glob...
The terminal hydride in the (PtPtPtII)-Pt-I-Pt-I triangulo cluster Pt-3(mu-PBu2t)(3)(H)(CO)(2) (1) m...
The terminal hydride in the (PtPtPtII)-Pt-I-Pt-I triangulo cluster Pt-3(mu-PBu2t)(3)(H)(CO)(2) (1) m...
The trinuclear platinum cluster [Pt3(μ-PBut2)3(CO)3]CF3SO3 (I) was designed featuring the presence o...
The reactions of [Pt<sub>6</sub>(CO)<sub>12</sub>]<sup>2–</sup> with CH(PPh<sub>2</sub>)<sub>2</sub...
The reaction of the [Pt<sub>3<i>n</i></sub>(CO)<sub>6<i>n</i></sub>]<sup>2–</sup> (<i>n</i> = 2–6) C...