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Allylic silanes, synthesis

Similarly, efficient tetracyclization (MeAlCl2-promoted) of the bis-allylic silane/ bis-epoxide 97 constitutes the key step in the synthesis of (+)-a-onocerin. In this case, because of the presence of the bis-allylic silane group, a double bis-annula-tion occurs, with the formation of the ethylene-bridge linked bis-decalin system present in the target compound (Scheme 8.26) [46],... [Pg.288]

Entries 11 to 13 are examples of iminium ion and acyliminium ion reactions. Note that in Entries 11 and 12, vinyl, rather than allylic, silane moieties are involved. Entries 14 and 15 illustrate the synthesis of (3,-y-unsaturated ketones by acylation of allylic silanes. [Pg.830]

Some examples of conjugate addition reactions of allylic silanes are given in Scheme 9.5. Entries 1 to 3 illustrate the synthesis of several (3-allyl ketones. Note that Entry 2 involves the creation of a quaternary carbon. Entry 4 was used in the synthesis of a terpenoid ketone, (+)-nootkatone. Entry 5 illustrates fluoride-mediated addition using tetrabutylammonium fluoride. These conditions were found to be especially effective for unsaturated esters. In Entry 6, the addition is from the convex face of the ring system. Entry 7 illustrates a ring closure by intramolecular conjugate addition. [Pg.833]

Each of the unsaturated cyclic amines shown below has been synthesized by reaction of an amino-substituted allylic silane under iminium ion cyclization conditions (CH2=0, TFA). By retrosynthetic analysis, identify the appropriate precursor for each cyclization. Suggest a method of synthesis of each of the required amines. [Pg.857]

There are, however, serious problems that must be overcome in the application of this reaction to synthesis. The product is a new carbocation that can react further. Repetitive addition to alkene molecules leads to polymerization. Indeed, this is the mechanism of acid-catalyzed polymerization of alkenes. There is also the possibility of rearrangement. A key requirement for adapting the reaction of carbocations with alkenes to the synthesis of small molecules is control of the reactivity of the newly formed carbocation intermediate. Synthetically useful carbocation-alkene reactions require a suitable termination step. We have already encountered one successful strategy in the reaction of alkenyl and allylic silanes and stannanes with electrophilic carbon (see Chapter 9). In those reactions, the silyl or stannyl substituent is eliminated and a stable alkene is formed. The increased reactivity of the silyl- and stannyl-substituted alkenes is also favorable to the synthetic utility of carbocation-alkene reactions because the reactants are more nucleophilic than the product alkenes. [Pg.862]

The allyl silane (185) has been used to prepare key intermediates for the synthesis of prostaglandins 66 5 ... [Pg.112]

Scheme 3.7. Diastereoselective formation of /S-silyl ( )- or (Z)-ester enolates by silylcuprate conjugate addition followed by alkylation with aldehydes [49]. Stereoselective synthesis of ( )-and (Z)-allyl silanes [50]. Scheme 3.7. Diastereoselective formation of /S-silyl ( )- or (Z)-ester enolates by silylcuprate conjugate addition followed by alkylation with aldehydes [49]. Stereoselective synthesis of ( )-and (Z)-allyl silanes [50].
Scheme 16 Synthesis of the allylic silane 89 by an 5 2 displacement of an allylic phosphate... Scheme 16 Synthesis of the allylic silane 89 by an 5 2 displacement of an allylic phosphate...
Non-racemic a-substituted allylic silanes, in particular crotylsilanes, are very attractive reagents despite their rather tedious preparation. They were found to provide very high transfer of chirality in their additions to achiral aldehydes under Lewis acid catalysis (Eq. 114). These reagents have been tested several times in the context of natural product synthesis. Their diastereoselectivity (syn/anti) depends on several factors, including the natme of the aldehyde substrate, the reagent, and the natme of the Lewis acid employed. For example, the syn product can be obtained predominantly in the reaction of Eq. 114 by switching to the use of a monodentate Lewis acid such as BF3. [Pg.71]

The development of new methods for the synthesis of homoallylic amine derivatives is an important area of synthetic efforts. Homoallylic amines are extremely important compounds as biologically active molecules [1], The Lewis acid-mediated reactions of imines with allyl silanes are among the most efficient for... [Pg.85]

Katagiri et al. (48,322,323) applied L-menthone and an in situ generated nitroso ketene for the synthesis of nitrone 212, as shown in Scheme 12.61. The nitrone showed high selectivities in reactions with various allyl silanes. High pressure or the presence of BF3 Et20 was required for the reaction to proceed. In the reaction of 212 with allyltrimethylsilane in the presence of BF3 -Et20, isoxazolidine (213) was obtained as the sole product. After hydrolysis and hydrogenolysis. [Pg.861]

Mikami et al. also investigated the addition of ketene silyl acetals. They found that addition of the silyl enol ether of acetone and allylic silanes did not result in the synthesis of substituted l,2-dihydro[60]fullerenes [218a,220], In 1997, Mikami et al. [221] reported the photoaddition of allylic stannanes that leads to monoallylation of C6o (Scheme 13). [Pg.688]

Coordination to alkynes distorts the triple bond character nearer to that of a double bond, decreasing the linearity. Utilization of the coordination effect makes it feasible to prepare cyclic alkynes whose synthesis is difficult to achieve. Highly strained cyclooctyne can be prepared by coordination. As an example, starting from (R)-pulegone, three of the four rings of the epoxydictymene skeleton 152 were constructed by the consecutive Lewis acid-promoted Nicholas reaction of allylic silane 149 to form 150, and the intramolecular Pauson-Khand reaction of 151. The total synthesis of (+)-epoxydictymene 153 from 152 has been achieved [38]. [Pg.368]

Enantioenriched ( )-allyl silane 376 is a highly useful building block for the synthesis of optically active tetra-hydropyrans 377, reacting with aldehydes and simple ketones with very effective chirality transfer in the presence of a Lewis acid (Equation 155, Table 18) <1998JOC6096>. [Pg.503]

Allyl silanes and stannanes are established as useful reagents in organic synthesis (107-110). Electrophilic attack occurs at the terminal carbon atom of the allyl system, leading to allylic transposition in the product [Eq. (7)]. [Pg.134]

Alkenylsilanes, mainly vinyl silanes and allyl silanes or related compounds, being widely used intermediates for organic synthesis can be efficiently prepared by several reactions catalyzed by transition-metal complexes, such as dehy-drogenative silylation of alkenes, hydrosilylation of alkynes, alkene metathesis, silylative coupling of alkenes with vinylsilanes, and coupling of alkynes with vinylsilanes [1-7]. Ruthenium complexes have been used for chemoselective, regioselective and stereoselective syntheses of unsaturated products. [Pg.202]

Revision of Chapter 47. The synthesis of a bridged tricyclic amine shown below starts with an enantiomerically pure allyl silane. Give mechanisms for the reactions, explaining how the stereochemistry is controlled in each step. [Pg.1341]

Dipolar cycloaddition of alkenes with carbonyl ylides generated in situ is a versatile method for tetrahydrofuran synthesis. The synthetic potential of such transformations has been reviewed <2005JOM(690)5533, 2003BMI6-253>. In addition, the stereoselective [3 + 2] annulation of allyl silanes has become a reliable protocol for the synthesis of tetrahydrofurans as demonstrated in several total syntheses . Such a [3 + 2] annulation, for example, affords the tetrahydrofuran product 11 as a single stereoisomer (Scheme 15) <2002OL2945>. Lanthanide salts serve as efficient Lewis acid catalysts in similar [3 + 2] cycloaddition reactions . [Pg.658]


See other pages where Allylic silanes, synthesis is mentioned: [Pg.260]    [Pg.480]    [Pg.260]    [Pg.480]    [Pg.92]    [Pg.83]    [Pg.1209]    [Pg.1228]    [Pg.1241]    [Pg.1243]    [Pg.1245]    [Pg.741]    [Pg.742]    [Pg.815]    [Pg.250]    [Pg.102]    [Pg.106]    [Pg.214]    [Pg.5]    [Pg.102]    [Pg.106]    [Pg.214]    [Pg.65]    [Pg.86]    [Pg.461]    [Pg.1364]    [Pg.360]   
See also in sourсe #XX -- [ Pg.78 ]




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