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Silanes Friedel-Crafts reaction

Now the aldehyde is oxidized to an add and the acid chloride does an intramolecular, Lewis-ac . -catalysed, aliphatic Friedel-Crafts reaction on the vinyl silane. Notice attack at the ipso carbon give a stable P-sUyl cation intermediate and that this vinyl silane has to react with inversion as frans-alkene is impossible in the ring. [Pg.444]

In chapter 16 we shall discover that vinyl-copper reagents can be prepared with stereochemical control over double bond geometry and acylated directly with acid chlorides. We shall also meet vinyl silanes and see how they too can be acylated with acid chlorides. In this chapter we shall consider only the acylation of alkenes themselves with acid chlorides, that is the aliphatic Friedel-Crafts reaction.15 The normal Friedel-Crafts reaction 66 combines an aromatic compound with an acid chloride and a Lewis acid to give a cation 67 which loses a proton to give an aryl ketone 68. [Pg.63]

If the electrophile also benefits from Lewis acid catalysis, as in the aliphatic Friedel-Crafts reaction, good yields of products are generally found. The anion of the allyl phosphonate 192 can be silylated to give the vinyl silane 193 and this reacts in turn with the classical combination of acetyl chloride and A1C13 to give the enone -194 that can be used in HWE reactions to make dienones46 (chapter 15). [Pg.272]

The well-established stabilization of a positive charge on carbon p to silicon has been utilized in very versatile methods for the control of aliphatic Friedel-Crafts reactions. The specificity of this stabilization lies behind the utility of both alkenyl- and allyl-silanes as substrates for electrophilic substitutions, and acylations in particular. These classes offer complementary regiospecificities in controlling both the site of acylation and the location of the double bond. This promotion of simple substitution is one of the most significant advances in aliphatic Friedel-Crafts acylations of recent times, and has recently been the subject of an exhaustive review. ... [Pg.712]

Titanium tetrachloride is a moisture-sensitive, highly flammable liquid reacting violently with water (34). It is a strong Lewis acid capable of promoting Diels-Alder reactions (35) and induces the addition of silyl enol ethers and allyl silanes to carbonyl compounds and derivatives (34r-36). It is a less commonly used catalyst in Friedel-Crafts reactions but very useful for the acylation of activated alkenes and in the Fries rearrangement. [Pg.16]

Highly enantiosele ctive annulation reactions of (tert-butyldiphenylsilyl)allenes with ethyl glyoxylate using bis(oxazolinyl)pyridine-scandium triflate complex was described [120]. This [3 + 2] cycloaddition gave the corresponding dihydrofurans in moderate to high yields with high enantioselectivities (Scheme 12.54). The vinyl-silane functionality was acylated in Friedel-Crafts reaction with acetyl chloride to produce a-alkoxyenone. [Pg.88]


See other pages where Silanes Friedel-Crafts reaction is mentioned: [Pg.148]    [Pg.165]    [Pg.205]    [Pg.24]   
See also in sourсe #XX -- [ Pg.2 , Pg.712 , Pg.728 ]

See also in sourсe #XX -- [ Pg.712 , Pg.728 ]

See also in sourсe #XX -- [ Pg.712 , Pg.728 ]

See also in sourсe #XX -- [ Pg.2 , Pg.712 , Pg.728 ]

See also in sourсe #XX -- [ Pg.712 , Pg.728 ]




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Silanes reactions

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