We report the synthesis of ‘hangman-type’ PNP pincer ligands and their associated Ru complexes. Upon deprotonation, the complexes undergo sp2-sp3 C-C bond cleavage and subsequent C-C formation processes to form a new, one carbon unit longer backbone motif. Unlike the starting geometry, the products are completely inactive in alcohol dehydrogenation catalysis. DFT and mechanistic studies suggest an intramolecular isomerization process via a spyrocycle cyclopropane intermediate, dependent upon arm pyridine coordination and ligand sterics
Iridium pincer complexes (R4PCP)IrHn (PCP=[k3-2,6-C6H3(CH2PR2)]) are effective catalysts for the deh...
The pincer complex (PNN)RuH(CO), with a de-aromatized pyridine in the ligand backbone, is shown to r...
In contrast to the conventional strategy of modifying the reactivities and selectivities of the tran...
We synthesized two 4Me−PNP ligands which block metal-ligand cooperation (MLC) with the Ru center and...
The novel tridentate PNNOH pincer ligand L H features a reactive 2-hydroxypyridine functionality as ...
Metal–ligand cooperation (MLC) by dearomatization/aromatization provides a unique way for bond activ...
The [Ru(CO) H(PNN)] pincer complex based on a dearomatised PNN ligand (PNN: 2-di-tert-butylphosphino...
Primary alcohol dehydrogenation by a PNP–Ru(II) catalyst was probed by low-temperature NMR experime...
The synthesis, structure, and catalytic activity of a series of bimetallic η6,η1-NCN-pincer rutheniu...
The synthesis of novel PNN ruthenium pincer complexes based on 2,2′-dipyridinemethane phosphine deri...
International audienceThe coordination to ruthenium(II) centres of two phosphine–pyridine–iminophosp...
Metal ligand cooperation (MLC) catalysis is a popular strategy to design highly efficient transition...
Kempe et al. and Milstein et al. have recently advanced the dehydrogenative coupling methodology to ...
The novel tridentate PNN<sup>OH</sup> pincer ligand <b>L</b><sup><b>H</b></sup> features a reactive ...
The mechanistic course of the amination of alcohols with ammonia catalyzed by a structurally modifie...
Iridium pincer complexes (R4PCP)IrHn (PCP=[k3-2,6-C6H3(CH2PR2)]) are effective catalysts for the deh...
The pincer complex (PNN)RuH(CO), with a de-aromatized pyridine in the ligand backbone, is shown to r...
In contrast to the conventional strategy of modifying the reactivities and selectivities of the tran...
We synthesized two 4Me−PNP ligands which block metal-ligand cooperation (MLC) with the Ru center and...
The novel tridentate PNNOH pincer ligand L H features a reactive 2-hydroxypyridine functionality as ...
Metal–ligand cooperation (MLC) by dearomatization/aromatization provides a unique way for bond activ...
The [Ru(CO) H(PNN)] pincer complex based on a dearomatised PNN ligand (PNN: 2-di-tert-butylphosphino...
Primary alcohol dehydrogenation by a PNP–Ru(II) catalyst was probed by low-temperature NMR experime...
The synthesis, structure, and catalytic activity of a series of bimetallic η6,η1-NCN-pincer rutheniu...
The synthesis of novel PNN ruthenium pincer complexes based on 2,2′-dipyridinemethane phosphine deri...
International audienceThe coordination to ruthenium(II) centres of two phosphine–pyridine–iminophosp...
Metal ligand cooperation (MLC) catalysis is a popular strategy to design highly efficient transition...
Kempe et al. and Milstein et al. have recently advanced the dehydrogenative coupling methodology to ...
The novel tridentate PNN<sup>OH</sup> pincer ligand <b>L</b><sup><b>H</b></sup> features a reactive ...
The mechanistic course of the amination of alcohols with ammonia catalyzed by a structurally modifie...
Iridium pincer complexes (R4PCP)IrHn (PCP=[k3-2,6-C6H3(CH2PR2)]) are effective catalysts for the deh...
The pincer complex (PNN)RuH(CO), with a de-aromatized pyridine in the ligand backbone, is shown to r...
In contrast to the conventional strategy of modifying the reactivities and selectivities of the tran...