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Carbosilane dendrimers characterization

One of the main applications of dendrimers is in catalysis allowing easy recycling of the homogeneous catalyst by means of nanofiltration. Carbosilane dendrimers functionalized with diphenylphosphine groups at the periphery have been synthesized and characterized. Palladium complexes of these dendrimers have been used as catalysts in the allylic alkylation reaction. These dendrimeric catalysts can be used in a continuous process using a membrane reactor.509... [Pg.599]

Rhodium complexes of the phosphine-functionalized carbosilane dendrimers are active for the hydroformylation of alkenes. The influence of the flexibility of the dendritic backbone on the catalytic performance was characterized by comparing dendritic ligands 84a-84c (conditions toluene, 80°C, 20 bar CO/H2) 49). [Pg.134]

In most cases, structural characterization of carbosilane dendrimers is accomplished by multinuclear one-dimensional NMR spectroscopy (1H, 13C and 29Si). However, as larger dendrimers are characterized standard spectroscopic methods become less useful due to the overlap of signals. This problem has been elegantly circumvented as described in a recent paper by Tessier, Rinaldi and coworkers56. In this paper the researchers described the use of 1 H/13C/29Si triple resonance, 3D and pulse field gradient NMR techniques to... [Pg.752]

SiOEt-terminated carbosilane dendrimers were prepared and characterized using potassium ionization of desorbed species mass spectrometry74. Preliminary investigations into the sol-gel chemistry of these dendrimers were also carried out. [Pg.762]

Polydentate phosphine ligands having a carbosilane dendrimer framework form polynuclear alkynyl complexes 702 and 703. The mononuclear complex with the same six-membered chelating ring 704 has been fully characterized. [Pg.542]

Carbosilane dendrimers of different generations were characterized with 2D-NMR experiments such as TOCSY, COSY, NOESY, HSQC, and HMBC. Welch et characterized... [Pg.172]

Their advantage over other types of dendrimers is their straightforward synthesis and, most importantly, their chemical and thermal stabilities. Two distinct steps characterize their synthesis a) an alkenylation reaction of a chlorosilane compound with an alkenyl Grignard reagent, and b) a Pt-cata-lyzed hydrosilylation reaction of a peripheral alkenyl moiety with an appropriate hydrosilane species. Scheme 2 shows the synthesis of catalysts Go-1 and Gi-1 via this methodology. In this case, the carbosilane synthesis was followed by the introduction of diamino-bromo-aryl groupings as the precursor for the arylnickel catalysts at the dendrimer periphery. The nickel centers of the so-called NCN-pincer nickel complexes were introduced by multiple oxidative addition reactions with Ni(PPh3)4. [Pg.9]


See other pages where Carbosilane dendrimers characterization is mentioned: [Pg.162]    [Pg.1758]    [Pg.747]    [Pg.750]    [Pg.755]    [Pg.762]    [Pg.767]    [Pg.776]    [Pg.68]    [Pg.570]    [Pg.243]    [Pg.1758]    [Pg.424]    [Pg.171]    [Pg.838]    [Pg.223]    [Pg.728]    [Pg.110]    [Pg.172]   
See also in sourсe #XX -- [ Pg.750 , Pg.752 , Pg.755 , Pg.756 ]




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