Bimetallic clusters of the general formula [PPN]2[MRh4(CO)15] (M Fe, Ru, or Os; PPN+ = (PPh3)2N+) are active catalysts in the presence of methanol for the carbonylation of nitrobenzene to methyl phenylcarbamate. The clusters are active even without co-catalyst, but the addition of bipy (2,2\u2032-bipyridine) greatly enhances both rates and selectivities. In the absence of methanol the conversion was much lower, with a low selectivity in phenyl isocyanate. Interchanging Fe, Ru, and Os has a negligible effect on the activity and a moderate effect on the selectivity, with ruthenium being best. However, the monometallic rhodium cluster [Rh5(CO)15]- proved to be both more active and selective, and the monomer [Rh(CO)4]- was found to be even bett...
Carbonylation of methanol to give acetic acid catalysed by Ru complexes such as trans-Ru(CO)2Cl2(PPh...
The reaction of N-heterocyclic carbene (NHC) derivatives of platinum or gold with ruthenium or cobal...
Reaction of [PPN][Rh(CO)4] with C6H3Cl2NO2 gives [PPN][Rh(CO)2ON(C6H3Cl2)C(O)O], the X-ray structure...
Bimetallic clusters of the general formula [PPN]2[MRh4(CO)15] (M = Fe, Ru, or Os; PPN+ = (PPh3)2N+) ...
The activity and selectivity behaviour of Rh(py)3Cl3 and Rh(CO)Cl(PPh3)2 complex catalysts on variou...
The investigation of the catalytic activity of supported rhodium(I) complex [Rh(P-S)(CO)2] (P-S; pol...
During our studies on the reductive carbonylation of nitrobenzene, we have found that palladium meta...
Ru3(CO)12 (1) and Ru(CO)3(PPh3)2 (2) catalyze the reductive carbonylation of nitrobenzene and of sub...
The ability of [Ru3(CO)12] to act as a homogeneous catalyst in the reductive carbonylation of nitrob...
Evidence is presented for the participation of cluster intermediates in the carbonylation of nitrobe...
Ru3(CO)12 and Ru(CO)3(PPh 3)2 catalyse the reductive carbonylation of aromatic nitro compounds to th...
2-Hydroxypyridine and related molecules have a large activating effect on the previously reported [P...
We studied systematically the use of tetranuclear cobalt, cobalt-ruthenium, cobalt-rhodium and rhodi...
Ruthenium(III)-Schiff base complexes of the type [Ru<SUP>III</SUP>L X<SUB>n=1 or 2</SUB>] where L = ...
A bimetallic SiO2-supported RhCo3 cluster catalyst derived from Rh-4(CO)(12) and Co-2(CO)(8) by coim...
Carbonylation of methanol to give acetic acid catalysed by Ru complexes such as trans-Ru(CO)2Cl2(PPh...
The reaction of N-heterocyclic carbene (NHC) derivatives of platinum or gold with ruthenium or cobal...
Reaction of [PPN][Rh(CO)4] with C6H3Cl2NO2 gives [PPN][Rh(CO)2ON(C6H3Cl2)C(O)O], the X-ray structure...
Bimetallic clusters of the general formula [PPN]2[MRh4(CO)15] (M = Fe, Ru, or Os; PPN+ = (PPh3)2N+) ...
The activity and selectivity behaviour of Rh(py)3Cl3 and Rh(CO)Cl(PPh3)2 complex catalysts on variou...
The investigation of the catalytic activity of supported rhodium(I) complex [Rh(P-S)(CO)2] (P-S; pol...
During our studies on the reductive carbonylation of nitrobenzene, we have found that palladium meta...
Ru3(CO)12 (1) and Ru(CO)3(PPh3)2 (2) catalyze the reductive carbonylation of nitrobenzene and of sub...
The ability of [Ru3(CO)12] to act as a homogeneous catalyst in the reductive carbonylation of nitrob...
Evidence is presented for the participation of cluster intermediates in the carbonylation of nitrobe...
Ru3(CO)12 and Ru(CO)3(PPh 3)2 catalyse the reductive carbonylation of aromatic nitro compounds to th...
2-Hydroxypyridine and related molecules have a large activating effect on the previously reported [P...
We studied systematically the use of tetranuclear cobalt, cobalt-ruthenium, cobalt-rhodium and rhodi...
Ruthenium(III)-Schiff base complexes of the type [Ru<SUP>III</SUP>L X<SUB>n=1 or 2</SUB>] where L = ...
A bimetallic SiO2-supported RhCo3 cluster catalyst derived from Rh-4(CO)(12) and Co-2(CO)(8) by coim...
Carbonylation of methanol to give acetic acid catalysed by Ru complexes such as trans-Ru(CO)2Cl2(PPh...
The reaction of N-heterocyclic carbene (NHC) derivatives of platinum or gold with ruthenium or cobal...
Reaction of [PPN][Rh(CO)4] with C6H3Cl2NO2 gives [PPN][Rh(CO)2ON(C6H3Cl2)C(O)O], the X-ray structure...