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Conjugate additions, copper-catalyze

Copper-catalyzed Enantioselective Conjugate Addition Reactions of Organozinc Reagents... [Pg.224]

A remarkable number of new BINOL- and TADDOL-based diiral ligands for tlie copper-catalyzed conjugate addition of R Zn reagents have recently been introduced, witli botli monodentate and bidentate ligands having proven capable of inducing bigli enanboselectivities [6, 11, 12, 46]. [Pg.234]

The copper-catalyzed additions of sulfonyl chlorides to conjugated dienes and trienes73 as well as to aryl-substituted cyclic olefins74 and substituted styrenes have been described75 for example, arenesulfonyl chlorides add to vinylarenes providing good to excellent yields75 of /J-chlorosulfones ... [Pg.1105]

CHROMIUM TRIOXIDE-PYRIDINE COMPLEX, preparation in situ, 55, 84 Chrysene, 58,15, 16 fzans-Cinnamaldehyde, 57, 85 Cinnamaldehyde dimethylacetal, 57, 84 Cinnamyl alcohol, 56,105 58, 9 2-Cinnamylthio-2-thiazoline, 56, 82 Citric acid, 58,43 Citronellal, 58, 107, 112 Cleavage of methyl ethers with iodotri-methylsilane, 59, 35 Cobalt(II) acetylacetonate, 57, 13 Conjugate addition of aryl aldehydes, 59, 53 Copper (I) bromide, 58, 52, 54, 56 59,123 COPPER CATALYZED ARYLATION OF /3-DlCARBONYL COMPOUNDS, 58, 52 Copper (I) chloride, 57, 34 Copper (II) chloride, 56, 10 Copper(I) iodide, 55, 105, 123, 124 Copper(I) oxide, 59, 206 Copper(ll) oxide, 56, 10 Copper salts of carboxylic acids, 59, 127 Copper(l) thiophenoxide, 55, 123 59, 210 Copper(l) trifluoromethanesulfonate, 59, 202... [Pg.114]

Chiral diaminocarbene complexes of copper were used in asymmetric conjugate addition of diethylzinc to Michael acceptors. Achiral copper carbene complexes derived from imidazolium salts were synthesized and characterized for the first time by Arduengo in 1993 [43]. In 2001, Woodward reported the use of such Arduengo-type carbene in copper-catalyzed conjugate addition and showed their strong accelerating effect [44]. The same year, Alex-... [Pg.223]

It is important to remember that the yield and reproducibility of hydrozircona-tions and the subsequent transformations depend on the presence of ionic impurities in 1 which often hamper the desired transformations. For example, in situ preparations of 1 with liEtjBH and BuMgCl were not appropriate for hydrozircona-tion/copper-catalyzed conjugate addition sequences otherwise preformed 1 is well adapted for these protocols. [Pg.274]

The synthesis in Scheme 13.5 also makes use of an aromatic starting material and follows a retrosynthetic plan similar to that in Scheme 13.3. The starting material was 4-methoxybenzaldehyde. This synthesis was somewhat more convergent in that the entire side chain except for C(14) was introduced as a single unit by a mixed aldol condensation in step A. The C(14) methyl was introduced by a copper-catalyzed conjugate addition in Step B. [Pg.1176]

The addition of terminal alkynes to carbon-carbon double bonds has not been explored until recently, possibly because C=C double bonds are not as good electrophiles as C=N or C=0. In 2003, Carreira et al. reported the first conjugate addition reaction of terminal alkynes to C=C catalyzed by copper in water. The reaction proceeded with derivatives of Meldrum s acid in water in the presence of Cu(OAc)2 and sodium ascorbate (Eq. 4.35).59 However, this method was limited to C=C double bonds with two electron withdrawing groups. [Pg.116]

In 1993, Alexakis et al. reported the first copper-catalyzed asymmetric conjugate addition of diethylzinc to 2-cyclohexenone using phosphorous ligand 28 (32% ee).36 An important breakthrough was achieved by Feringa et al. with chiral phosphoramidite (S,R,R)-29 (Figure 1), which showed excellent selectivity (over 98% ee) for the addition of 2-cyclohexenone.37 Since then, efficient protocols for the conversion of both cyclic and acyclic enones, as well as lactones and nitroalkenes, have been developed featuring excellent stereocontrol. [Pg.374]

A remarkable number of chiral phosphorus ligands (phosphoramidites, phosphites, and phosphines with modular structures) have been introduced into the copper-catalyzed conjugate addition of R2Zn reagents, and high enantio-selectivities (>90%) are now possible for all three different classes of substrates 2-cyclohexenones and larger ring enones, 2-cyclopentenones, and acyclic enones. [Pg.375]

Feringa, B. L. Naasz, R. Imbos, R. Arnold, L. A. Copper-catalyzed Enantioselective Conjugate Addition Reactions of Organozinc Reagents. In Modem Organocopper Chemistry Krause, N. Ed. Wiley-VCH GmbH Weinheim, 2002 Chapter 7, pp 224—258. [Pg.399]

In the conjugate addition of diethylzinc to enones catalyzed by copper reagent CuOTf or Cu(OTf)2 in the presence of 90, an ee of over 60% has been obtained. Study also shows that the actual catalyst in the reaction may be a Cu(I) species formed via in situ reduction of Cu(II) complexes. [Pg.477]


See other pages where Conjugate additions, copper-catalyze is mentioned: [Pg.443]    [Pg.224]    [Pg.286]    [Pg.127]    [Pg.129]    [Pg.130]    [Pg.131]    [Pg.133]    [Pg.145]    [Pg.283]    [Pg.330]    [Pg.333]    [Pg.892]    [Pg.693]    [Pg.1218]    [Pg.537]    [Pg.210]    [Pg.390]    [Pg.376]    [Pg.377]    [Pg.379]    [Pg.383]    [Pg.389]    [Pg.397]    [Pg.478]   
See also in sourсe #XX -- [ Pg.181 ]




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Addition catalyzed

COPPER-CATALYZED CONJUGATE ADDITION OF ORGANOZINC

COPPER-CATALYZED CONJUGATE ADDITION OF ORGANOZINC REAGENTS TO a,p-UNSATURATED KETONES

Conjugate addition catalyzed

Conjugate addition, copper-catalyzed reactions

Conjugate addition, copper-catalyzed reactions Grignard reagents

Conjugate copper-catalyzed

Copper additive

Copper conjugate addition

Copper-Catalyzed Enantioselective Conjugate Addition of Diethylzinc to Enones

Copper-catalyzed Enantioselective Conjugate Addition Reactions of Organozinc Reagents

Copper-catalyzed conjugate additions

Copper-catalyzed conjugate additions

Magnesium, organo- compounds copper-catalyzed conjugate addition

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