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Of allyl ester

Asymmetric hydrogenolysis of allylic esters with formic acid with satisfactory ee was observed[387], Geranyl methyl carbonate (594) was reduced to 570 with formic acid using l,8-bis(dimethylamino)naphthalene as a base and MOP-Phen as the best chiral ligand, achieving 85% ee. [Pg.371]

Tributyltin hydride is used for hydrogenolysis of allylic esters[369-372]. [Pg.379]

Cartxjxylalion and subsequent allylation of alkyl heterocycles (via Claisen rearrangement of allyl esters)... [Pg.59]

This effect is the basis of the synthetic importance of ester enolate Claisen rearrangements in which enolates or silyl enol ethers of allylic esters are rearranged into 4-pentenoate esters. [Pg.634]

Transfer to monomer is of particular importance during the polymerization of allyl esters (113, X=()2CR), ethers (113, X=OR), amines (113, X=NR2) and related monomcrs.iw, 8, lb2 The allylic hydrogens of these monomers arc activated towards abstraction by both the double bond and the heteroatom substituent (Scheme 6.31). These groups lend stability to the radical formed (114) and are responsible for this radical adding monomer only slowly. This, in turn, increases the likelihood of side reactions (i.e. degradative chain transfer) and causes the allyl monomers to retard polymerization. [Pg.319]

It is possible to treat ketones with allyl alcohol and an acid catalyst to give y,5-unsaturated ketones directly, presumably by initial formation of the vinylic ethers, and then Claisen rearrangement.In an analogous procedure, the enolates (126) of allylic esters [formed by treatment of the esters with lithium isopropylcyclohex-... [Pg.1451]

Coupling of allylic esters with organometallic reagents... [Pg.1649]

The hydrolytic DKR of allyl esters has been studied as a DKR of esters. The first DKR was accomplished through Pd-catalyzed racemization and enzymatic hydrolysis of allylic acetates in a buffer solution. However, the DKR under these conditions was limited to cyclohexenyl acetates to give symmetrical palladium-allyl intermediates. Among them, 2-phenyl-2-cyclohexenyl acetate 9 was the only substrate to have been resolved with good results (81% yield, 96% ee). [Pg.70]

Enolates of allyl esters of a-amino acids are also subject to chelation-controlled Claisen rearrangement.249... [Pg.571]

Hydrolysis of allyl ester 201b was performed with diethylamine in the presence of Pd(PPh3)4. The carboxylic acid 201c thus obtained could be amidated with a tryptophan derivative using l-(3-dimethylaminopropyl)-3-ethylcarbodiimide as... [Pg.250]

The Baran group has reported an unusual deprotection of allyl esters in micro-wave-superheated water. A diallyl ester structurally related to the sceptrin natural products (see Scheme 6.87) was cleanly deprotected at 200 °C within 5 min (Scheme 6.168) [181]. Other standard deprotection transformations carried out under microwave conditions, specifically N-detosylations [317], trimethylsilyl (TMS) removal [318, 319], and N-tert-butoxycarbonyl (Boc) deprotection [231], are summarized in Scheme 6.169. [Pg.217]

The hydrolysis of allyl esters has been achieved with K 10 clay [40]. [Pg.186]

The reaction of tert-butyl esters with Et3SiH/TFA results in the reductive deprotection of the ester and formation of isobutane. The yields of the isobutane are not recorded, but the acids are obtained nearly quantitatively (Eq. 150).307 In a similar manner, the lactone shown in Eq. 151 is converted into the acid in good yield.308 In like manner, the reductive deprotection of allyl esters provides the carboxylic acids in high yields.270... [Pg.55]

Table 7. organosilane reduction of allyl Esters (continued)... [Pg.254]

Supplemental References for Table 7. Organosilane Reduction of Allyl Esters... [Pg.739]

The Pd(0)-catalyzed displacement of allylic acetates (297) with various nucleophiles via the allylic Pd(II) complex (298) is a well-established procedure (Scheme 114). Through attack of electrons (+2e ) in place of nucleophiles, (298) is expected to undergo a reductive cleavage providing allylic carbanions (299) and the acetate anion along with Pd(0) complexes. The latter can then be captured by various electrophiles (polarity inversion. Scheme 114) leading to (300) [434]. This procedure is useful for the deprotection of allyl esters under neutral conditions. Recently, a mechanistic study of the Pd-catalyzed reaction of allylic acetate (297), using carbonyl compounds as an electrophile, has been reported [435]. [Pg.560]

For further details of this reaction, the reader is referred to Chapter 9. The catalytic allylation with nucleophiles via the formation of Ti-allyl metal intermediates has produced synthetically useful compounds, with the palladium-catalyzed reactions being known as Tsuji-Trost reactions [31]. The reactivity of Ti-allyl-iridium complexes has been widely studied [32] for example, in 1997, Takeuchi idenhfied a [lrCl(cod)]2 catalyst which, when combined with P(OPh)3, promoted the allylic alkylation of allylic esters 74 with sodium diethyl malonate 75 to give branched... [Pg.260]

Rearrangement of allyl trimethylsilyl ketene acetal, prepared by reaction of allylic ester enolates with trimethylsilyl chloride, to yield Y,5-unsaturated carboxylic a-cids. The Ireland-Claisen rearrangement seems to be advantageous to the other variants of the Claisen rearrangement in terms of E/Z geometry control and mild conditions. [Pg.137]

The high regio- and stereospecificity in the rhodium-catalyzed system does not seem to be compatible with the catalytic asymmetric synthesis using a chiral rhodium catalyst, and thus, there have so far been very few reports on the use of chiral rhodium catalysts for the asymmetric allylic alkylation. In 1999, Pregosin and his co-workers first reported asymmetric rhodium-catalyzed allylic alkylation of allylic esters (Equation (48)). Use of optically active... [Pg.104]

As described in many reviews, Trost and his co-workers have carried out a pioneering work on the molybdenum-and tungsten-catalyzed allylic alkylation of allylic esters regioselectivity of the reaction is often complementary to the palladium-catalyzed allylic alkylation. The first asymmetric version was disclosed by Pfaltz and Lloyd-Jones in 1995 (Equation (63)). They used a catalytic amount of a novel tungsten complex, prepared from [W(CO)3(MeCN)3] or [W(cycloheptatriene) (COIs] and optically active (diphenylphosphino)phenyloxazolines 57, for the allylic alkylation of 3-aryl-2-propenyl phosphate with dimethyl sodiomalonate to isolate the corresponding branched alkylated compounds as a major isomer with an excellent enantioselectivity (96% ee). Unexpectedly, 3-aryl-2-propenyl carbonates are shown to be unreactive. It is worth noting that an isostructural molybdenum complex does not promote the catalytic alkylation under the same reaction conditions. In contrast, Lloyd-Jones and Lehmann reported the stereocontrolled... [Pg.111]

Asymmetric Synthesis of Allylic Sulfones and Allylic Sulfides and Kinetic Resolution of Allylic Esters... [Pg.216]

Another method for deallylation of allyl esters is the transfer of the allyl group to reactive nucleophiles. Amines such as morpholine are used[415-417], Potassium salts of higher carboxylic acids are used as an accepter of the allyl group[418]. The method is applied to the protection and deprotection of the acid function in rather unstable /3-lactam 664[419,420]. [Pg.478]

A conceptually different C-C bond forming reaction involving intramolecular radical cyclisation of allylic esters of bromodifluoroacetic acid was described by Itoh et al. [200]. Reduction to the acetal sets the stage for a tin hydride-mediated cyclisation (Eq. 65). [Pg.158]


See other pages where Of allyl ester is mentioned: [Pg.380]    [Pg.383]    [Pg.103]    [Pg.103]    [Pg.252]    [Pg.202]    [Pg.109]    [Pg.505]    [Pg.103]    [Pg.105]    [Pg.105]    [Pg.197]    [Pg.479]    [Pg.488]    [Pg.798]    [Pg.1273]   
See also in sourсe #XX -- [ Pg.14 , Pg.738 ]




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Acid-catalyzed isomerization of allylic esters

Allylation esters

Allylation of Alkyl Esters, Ethers, and Alcohols

Asymmetric Alkylation or Amination of Allylic Esters

Claisen rearrangement of allyl ester

Deprotection of allyl esters

Enantioselective Reactions of Unsymmetrical Allylic Esters Catalyzed by Molybdenum, Ruthenium, Rhodium, and Iridium

Esters allyl

Esters allylic

Ireland-Claisen rearrangement of allylic glycolate esters

Isomerisations of allyl esters

Isomerizations of allylic esters

Kinetic Resolution of Allylic Esters

Organosilane Reduction of Allyl Esters

Pd-Catalyzed (Tsuji-Trost) Coupling of Arylboronic Acids and Allylic Esters

Rearrangement of a-Alkoxy-Substituted Allylic Esters

Rearrangement of a-Hydroxy Substituted Allylic Esters

Rearrangement of a-Thio Substituted Allylic Esters

Reviews Concerning the Use of Allyl Esters in Carboxyl Protection

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