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Insertion catalysis

Monoorganopalladium (II) complexes with tridentate CO insertion (catalysis) 10 295 H 146... [Pg.141]

Stable transition-metal complexes may act as homogenous catalysts in alkene polymerization. The mechanism of so-called Ziegler-Natta catalysis involves a cationic metallocene (typically zirconocene) alkyl complex. An alkene coordinates to the complex and then inserts into the metal alkyl bond. This leads to a new metallocei e in which the polymer is extended by two carbons, i.e. [Pg.251]

In all cases of catalysis, the catalyst acts by inserting intermediate steps in a reaction—steps that would not... [Pg.137]

Keywords Cycloprop anation Insertion Ylide reactions Asymmetric catalysis Synthesis... [Pg.203]

The most useful of the insertion processes is the intramolecular reactions that occur with high selectivity for the formation of five-membered ring products. The electrophilic nature of the process is suggested by C-H bond reactivity in competitive experiments (3°>20 >1°) [76, 77]. Asymmetric catalysis with Rh2(MPPIM)4 has been used to prepare a wide variety of lignans that include (-)-enterolactone (3) [8], as well as (R)-(-)-baclofen (2) [7],2-deoxyxylolactone (31) [80,81],and (S)-(+)-imperanane (32) [82].Enantioselectivities are 91-96%... [Pg.214]

One of the most dramatic recent developments in metal carbene chemistry catalyzed by dirhodium(II) has been demonstration of the feasibility and usefulness of intermolecular carbon-hydrogen insertion reactions [38, 91]. These were made possible by recognition of the unusual reactivity and selectivity of aryl- and vinyldiazoacetates [12] and the high level of electronic control that is possible in their reactions. Some of the products that have been formed in these reactions, and their selectivities with catalysis by Rh2(S-DOSP)4, are reported in Scheme 10. [Pg.216]

This is clo.sely related to the Tertiary radical synthesis" scheme for the preparation of organocobalt porphyrins, in which alkenes insert into the Co—H bond of Co(Por)H instead of creating a new radical as in Eq. (13). If the alkene would form a tertiary cobalt alkyl then polymerization rather than cobalt-alkyl formation is observed. " " " The kinetics for this process have been investigated in detail, in part by competition studies involving two different alkenes. This mimics the chain transfer catalysis process, where two alkenes (monomer and oligomers or... [Pg.290]

Much of the recent interest in insertion reactions undeniably stems from the emphasis placed on development of homogeneous catalysis as a rational discipline. One or more insertion is involved in such catalytic processes as the hydroformylation (31) or the polymerization of olefins 26, 75) and isocyanides 244). In addition, many insertion reactions have been successfully employed in organic and organometallic synthesis. The research in this general area has helped systematize a large body of previously unrelated facts and opened new areas of chemistry for investigation. Heck 114) and Lappert and Prokai 161) provide a comprehensive compilation and a systematic discussion of a wide variety of insertion reactions in two relatively recent (1965 and 1967) reviews. [Pg.90]

Carbon monoxide insertion and decarbonylation reactions of rhodium complexes have been studied mainly in the context of investigations concerned with catalysis. [Pg.133]

G. P. Chiusoli Catalysis of some insertion reactions by nickel complexes, pp, 169-199 (31). [Pg.452]

Organometallic catalysis insertion and ring opening mechanism of methylene-cyclopropane over Cp2LaH and Cp2LuH catalysts... [Pg.8]

Our attempts to prepare chromium hydrides and to evaluate their role in polymerization catalysis eventually led to the isolation of a series of alkyls and hydrides lacking any ancillary ligands besides the cyclopentadienyl moiety (see below).[6] Reduced to the essence of alkyls, these complexes provided another piece of evidence in the growing case against polymerization activity of divalent chromium none of the alkyls even reacted with ethylene. The hydride underwent one insertion and stopped at the stage of an ethyl group. [Pg.154]

In many macroscopic systems, the massive behavior is a convoluted answer to many microscopic features of the system. For example, the catalysis of the electrooxidation of an organic molecule may be generated by some local arrangement of atoms on a catalyst, defined at the atomic level. If some hypotheses are available to explain the enhancement of the reaction, this can be checked by inserting these hypotheses in the model. In a first approximation, a qualitative explanation is often sought. If this is... [Pg.661]

The acrylate complex 10 was suggested to be the major solution species during catalysis, since the equilibrium in Scheme 5-11, Eq. (2) lies to the right (fQq > 100)-Phosphine exchange at Pt was observed by NMR, but no evidence for four-coordinate PtL, was obtained. These observations help to explain why the excess of phosphine present (both products and starting materials) does not poison the catalyst. Pringle proposed a mechanism similar to that for formaldehyde and acrylonitrile hydrophosphination, involving P-H oxidative addition, insertion of olefin into the M-H bond, and P-C reductive elimination (as in Schemes 5-3 and 5-5) [11,12]. [Pg.149]


See other pages where Insertion catalysis is mentioned: [Pg.86]    [Pg.138]    [Pg.140]    [Pg.31]    [Pg.141]    [Pg.141]    [Pg.141]    [Pg.112]    [Pg.86]    [Pg.138]    [Pg.140]    [Pg.31]    [Pg.141]    [Pg.141]    [Pg.141]    [Pg.112]    [Pg.263]    [Pg.8]    [Pg.165]    [Pg.175]    [Pg.394]    [Pg.144]    [Pg.151]    [Pg.199]    [Pg.96]    [Pg.21]    [Pg.487]    [Pg.59]    [Pg.136]    [Pg.76]    [Pg.322]    [Pg.54]    [Pg.60]    [Pg.112]    [Pg.113]    [Pg.304]    [Pg.308]    [Pg.65]    [Pg.25]    [Pg.381]   
See also in sourсe #XX -- [ Pg.682 , Pg.683 , Pg.684 ]




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Carbon monoxide insertions catalysis

Copper catalysis carbene insertion

Homogeneous catalysis insertion

Insertion reactions catalysis

Rhodium compounds, catalysis insertion reactions

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