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Supported catalysts iridium complexes

Dehydrocyclization, 30 35-43, 31 23 see also Cyclization acyclic alkanes, 30 3 7C-adsorbed olefins, 30 35-36, 38-39 of alkylaromatics, see specific compounds alkyl-substituted benzenes, 30 65 carbene-alkyl insertion mechanism, 30 37 carbon complexes, 32 179-182 catalytic, 26 384 C—C bond formation, 30 210 Q mechanism, 29 279-283 comparison of rates, 28 300-306 dehydrogenation, 30 35-36 of hexanes over platintim films, 23 43-46 hydrogenolysis and, 23 103 -hydrogenolysis mechanism, 25 150-158 iridium supported catalyst, 30 42 mechanisms, 30 38-39, 42-43 metal-catalyzed, 28 293-319 n-hexane, 29 284, 286 palladium, 30 36 pathways, 30 40 platinum, 30 40 rate, 30 36-37, 39... [Pg.87]

Itsimo [25] has also shown that polymer-supported OPEN monosulfonamides containing sulfonated pendent group (Scheme 16) are able to catalyze the HTR reduction of ketones in water with sodium formiate as hydrogen donor (S/C = 100). However, TsDPEN immobilized on polystyrene crosslinked or not, polymer 30 and 31 respectively, shrank in water. Sodium /j-styrene sulfonate was copolymerized with chiral A-(vinylbenzene-p-sulfonyl)-DPEN (20) imder radical polymerization conditions with or without DVB leading respectively to ligand 32 and 33. Control of the balance hydrophilicity/hydrophobieity of the polymer support is carried out by changing the salt from Na to quaternary ammonium. All of these polymers swelled in water, and their respective ruthenium, rhodium or iridium complexes were prepared. Compared to sodium salt polymer-supported catalyst from 32a and 33a, ammonium... [Pg.55]

Although highly active pincer-PCP-li catalysts have been designed for the dehydrogenation of alkanes, selective systems remain elusive [139]. Pincer-type NHC-based iridium complexes have been also tested in such a challenging reaction. Iridium complexes supported by pincer-NHC ligands described by... [Pg.319]

In 2013, Gao, Hou, and co-workers reported a mesoporous silica (SBA-15) supported iridium complex-catalyzed A/-alkylation of primary amines with benzyl alcohols (Eq. 38) [141]. The catalyst could be recovered easily and reused at least 12 times without notable decrease in catalytic efficiency (1st, 93 % 12th, 83 %). [Pg.329]

Wang D, Gao Z-W, Hou X-F et al (2013) An efficient and recyclable catalyst for N-aUcylation of amines and p-aUcylation of secondary alcohols with primary alcohols SBA-15 supported N-hete-rocyclic carbene iridium complex. Adv Synth Catal 355(6) 1117-1125... [Pg.366]

Support-bound transition metal complexes have mainly been prepared as insoluble catalysts. Table 4.1 lists representative examples of such polymer-bound complexes. Polystyrene-bound molybdenum carbonyl complexes have been prepared for the study of ligand substitution reactions and oxidative eliminations [51], Moreover, well-defined molybdenum, rhodium, and iridium phosphine complexes have been prepared on copolymers of PEG and silica [52]. Several reviews have covered the preparation and application of support-bound reagents, including transition metal complexes [53-59]. Examples of the preparation and uses of organomercury and organo-zinc compounds are discussed in Section 4.1. [Pg.165]


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See also in sourсe #XX -- [ Pg.465 ]




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