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Cross stereoselective

The thioboration of terminal alkynes with 9-(alkylthio)-9-borabicyclo[3.3.1]-nonanes (9-RS-9-BBN) proceeds regio- and stereoselectively by catalysis of Pd(Ph,P)4 to produce the 9-[(Z)-2-(alkylthio)-l-alkeny)]-9-BBN derivative 667 in high yields. The protonation of the product 667 with MeOH affords the Markownikov adduct 668 of thiol to 1-alkyne. One-pot synthesis of alkenyl sulfide derivatives 669 via the Pd-catalyzed thioboration-cross-coupling sequence is also possible. Another preparative method for alkenyl sulfides is the Pd-catalyzed cross-coupling of 9-alkyl-9-BBN with l-bromo-l-phe-nylthioethene or 2-bromo-l-phenylthio-l-alkene[534]. [Pg.225]

Butyraldehyde undergoes stereoselective crossed aldol addition with diethyl ketone [96-22-0] ia the presence of a staimous triflate catalyst (14) to give a predominantiy erythro product (3). Other stereoselective crossed aldol reactions of //-butyraldehyde have been reported (15). [Pg.378]

Optically active (Z)-l-substituted-2-alkenylsilanes are also available by asymmetric cross coupling, and similarly react with aldehydes in the presence of titanium(IV) chloride by an SE process in which the electrophile attacks the allylsilane double bond unit with respect to the leaving silyl group to form ( )-s)vr-products. However the enantiomeric excesses of these (Z)-allylsilanes tend to be lower than those of their ( )-isomers, and their reactions with aldehydes tend to be less stereoselective with more of the (E)-anti products being obtained74. [Pg.353]

Trimethyl(l-phenyl-2-propenyl)silane of high enantiomeric excess has also been prepared by asymmetric cross coupling, and reacts with aldehydes to give optically active products in the presence of titanium(IV) chloride. The stereoselectivity of these reactions is consistent with the antiperiplanar process previously outlined75. [Pg.353]

Titanium enolates can also be used under conditions in which the titanium exists as an ate species. Crossed aldehyde-aldehyde additions have been accomplished starting with trimethylsilyl enol ethers, which are converted to lithium enolates and then to ate species by addition of Ti(0- -Bu)4.26 These conditions show only modest stereoselectivity. [Pg.75]

Attainment of higher chemoselectivity (cross-coupling) and stereoselectivity in both radical reactions is expected to be one of the coming goals in this field. [Pg.84]

The use of chiral bidentate phosphines (such as BINAP) in enantioselective cross-coupling reactions has been described, though only modest stereoselectivity has been achieved.431... [Pg.350]

The transition metal cross-couplings of allenes described here offer practical solutions for the modification of 1,2-dienes and access to the preparation of highly functionalized 1,3-dienes, alkynes and alkenes, which are often not easily accessible in a regio- and stereoselective manner by classical methods. Some of the prepared alkynes or functionalized allenes serve as important intermediates in syntheses of natural products, biologically active compounds, e.g. enynes and enyne-allenes, and new materials. It can be predicted that further synthetic efforts will surely be focused on new applications of allenes in transition metal-catalyzed cross-coupling reactions. [Pg.873]

Scheme 16.73 Stereoselective preparation of cyclic cross-conjugated trienes. Scheme 16.73 Stereoselective preparation of cyclic cross-conjugated trienes.
The cross-coupling reaction between an allene and an acetylene takes place at the terminal double bond of an allene to generate a titanacyde, which, on treatment with electrophiles, gives diverse 1,4-dienes in a highly stereoselective manner (Scheme 16.100) [105],... [Pg.968]


See other pages where Cross stereoselective is mentioned: [Pg.213]    [Pg.295]    [Pg.175]    [Pg.352]    [Pg.764]    [Pg.272]    [Pg.290]    [Pg.329]    [Pg.112]    [Pg.80]    [Pg.764]    [Pg.27]    [Pg.38]    [Pg.38]    [Pg.288]    [Pg.273]    [Pg.138]    [Pg.344]    [Pg.818]    [Pg.48]    [Pg.183]    [Pg.96]    [Pg.252]    [Pg.439]    [Pg.457]    [Pg.174]    [Pg.230]    [Pg.188]    [Pg.410]    [Pg.182]    [Pg.253]    [Pg.410]    [Pg.669]    [Pg.657]    [Pg.130]    [Pg.29]    [Pg.30]    [Pg.76]    [Pg.64]   
See also in sourсe #XX -- [ Pg.162 ]




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Crossed aldol condensation stereoselective

Palladium-catalyzed cross-coupling stereoselective

Stereoselective synthesis cross-coupling reactions

Stereoselectivity cross-aldol reactions

Stereoselectivity olefin cross-metathesis

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