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Palladium allylic amination

The allyl bromides formed by method (A) contain 25% of the undesired (Z)-isomer. The selectivity of the palladium-catalyzed amination can be steered by the application of polymer-bound systems (see section 2.6.3 B. M. Trost, 1978),... [Pg.303]

Addition of several organomercury compounds (methyl, aryl, and benzyl) to conjugated dienes in the presence of Pd(II) salts generates the ir-allylpalladium complex 422, which is subjected to further transformations. A secondary amine reacts to give the tertiary allylic amine 423 in a modest yield along with diene 424 and reduced product 425[382,383]. Even the unconjugated diene 426 is converted into the 7r-allyllic palladium complex 427 by the reaction of PhHgCI via the elimination and reverse readdition of H—Pd—Cl[383]. [Pg.82]

A non-covalently functionalized dendrimer was also applied in a continuous allylic amination reaction.[33] PPI dendrimers functionalized with urea adamantyl groups can act as host molecules for phosphorus ligands equipped with acetyl urea groups (Figure 4.18). The so formed supramolecular complex was reacted with a palladium precursor... [Pg.85]

Palladium complexes are general and versatile catalysts for allylic amination.1,la lh The palladium-catalyzed allylic aminations of 1,3-symmetrically disubstituted substrates, including enantioselective versions, have been widely studied.1, a h It has been important to control the regioselectivity in allylic amination of unsymmetrical substrates 1 or 2 (Equation (1)). In general, palladium-catalyzed allylic amination gives the ( )-linear product 3Tla lh regiocontrol in amination has recently attracted much attention in approaches toward the branched product 4. [Pg.695]

An unusually high regioselectivity was observed by Cook s group in palladium-catalyzed allylic amination of 5-vinyloxazolidinone 10 (Scheme 2).5 An imide-type nucleophile was directed to the internal carbon, whereas... [Pg.696]

For the synthesis of heterocycles, an efficient strategy has been introduced utilizing the dual transition metal sequences (Scheme 6).11,lla The key issue is the compatibility of the two catalyst systems. Jeong et al. studied the one-pot preparation of bicyclopentenone 35 from propargylsulfonamide 33 and allylic acetate.11 This transformation includes two reactions the first palladium-catalyzed allylation of 33 generates an enyne 34 and the following Pauson-Khand type reaction (PKR) of 34 yields a bicyclopentenone 35. The success of this transformation reflects the right combination of catalysts which are compatible with each other because the allylic amination can be facilitated by the electron-rich palladium(O) catalyst and the PKR needs a Lewis-acidic catalyst. Trost et al. reported the one-pot enantioselective... [Pg.699]

Allylic amination is important for the solid-phase organic synthesis.15 The solid-phase allylic aminations are devised into the G-N bond formation on solid support and the deprotection of allyl ethers. As a novel deprotection method, the palladium-catalyzed cyclization-cleavage strategy was reported by Brown et al. (Equation (4)).15a,15b The solid-phase synthesis of several pyrrolidines 70 was achieved by using palladium-catalyzed nucleophilic cleavage of allylic linkages of 69. [Pg.703]

The sodium salt of 18 condenses with allylic acetates (E)-R1 CH=CH—CHR2OAc (R1 = Ph or C7H15 R2 = Me or C7H15) in THF in the presence of a catalytic amount of tetrakis(triphenylphosphine)palladium(0) to give doubly protected allylic amines (equation 17)49. [Pg.541]

Amino alkenols have been prepared by palladium-catalyzed chloroacetoxylation and allylic amination of 1,3-dienes. 1,4-Acetoxychlorination is stereospecific and cyclic dienes give an overall cis- 1,4-addition12. Acetoxychlorination of 6-acetoxy-l,3-cycloheptadiene afforded only one isomer as shown in equation 8. Sequential substitution of the allylic chloro group can occur with either retention or inversion, thereby allowing complete control of the 1,4-relative stereochemistry (equation 9). [Pg.697]

After the initial demonstration of stoichiometric nucleophilic attack on 7i-allyl ligands, catalytic allylic substitution reactions were pursued. In 1970, groups from Union Carbide [3, 4], Shell Oil [5], and Toray Industries [6] published or patented examples of catalytic allylic substitution. All three groups reported allylic amination with palladium catalysts. The Toray Industries report also demonstrated the exchange of aryl ether and ester leaving groups, and the patent from Shell Oil includes catalysts based on rhodium and platinum. [Pg.172]

Table 3. Catalysis results for the Barbier reaction of benzaldehyde and allyl bromide in presence of homogeneous palladium catalyst (entry 1) and those prepared by complexing palladium to amine functionalized mesoporous silica (entry 2-4) [74]... Table 3. Catalysis results for the Barbier reaction of benzaldehyde and allyl bromide in presence of homogeneous palladium catalyst (entry 1) and those prepared by complexing palladium to amine functionalized mesoporous silica (entry 2-4) [74]...
Palladium-catalyzed, Allylic Amination. Allylic substitution of mono-saccharidic hex-2-enopyranoside 4-acetates with secondary amines in the presence of tetrakis (triphenylphosphine)palladium(O) liad led to a large variety of 4-aminated 2-enosides, with retention of configuration (56-58). The method was applied to the disaccaridic enoside 1 to give, with benzylmethylamine or dibenzylamine, the 4-amino sugar derivatives g in yields of 92 and 67% (46). Studies concerning hydrox-ylation of t)ie double bond and subsequent deprotection are incomplete. [Pg.39]

In a subsequent paper (87), the same authors investigated the palladium-catalyzed allylic aminations with pyrphos-functionlized PPI and PAMAM dendrimers as multidentate ligands. Zero to four generation PPI-(pyrphosPdCl2)x and PAMAM-(pyrphosPdCl2)x neutral dendrimers (97) showed a strong positive dendritic effect on the selectivity of the allylic amination of 1,3-diphenyl-1-acetoxypropene with morpholine (at 45°C in DMSO). [Pg.142]

HsCjljN-MgBr 30 25 Bis-[2,4-pentandionato]-palladium Allyl-diethyl-amin 96 8... [Pg.736]

Ligand Scaffold Optimization in Palladium-Catalyzed Asymmetric Allylic Amination... [Pg.244]

Ligand Scaffold Optimization in Palladium-Catalyzed Asymmetric Allylic Amination 245 100 I--------------------------------------------------------------------------------zr... [Pg.245]

Palladium-catalyzed coupling of allylic acetate 113 (Scheme 23) with diethyl malonate, or with acetylated diethyl tartronate, yielded the Boc-protected allylic amines 114 in 99 1 E stereoselectivity.1 "1 Saponification of 114 (R1 = H) and decarboxylation gave the Tyr- Ala alkene isostere 116 in quantitative yield, whereas 114 (R = OAc) was converted into the Tyr-Gly alkene isostere 115 in a two-step procedure in 62% overall yield. Considering the number of steps and the overall yield, this procedure is among the most efficient to prepare Xaatp, CH=CH]Gly dipeptide isosteres. [Pg.353]

Polystyrene-bound secondary aliphatic amines and /V-alkyl amino acids can be ally-lated by treatment with a diene and an aryl iodide or bromide in the presence of palla-dium(II) acetate (Entry 14, Table 10.3). As the diene, 1,3-, 1,4-, and 1,5-dienes can be used, and, besides aryl halides, heteroaryl bromides have also been successfully used [63], This remarkable reaction is likely to proceed via the formation of an aryl palladium complex, with subsequent insertion of an alkene into the C-Pd bond. The resulting organopalladium compound does not undergo ( -elimination (as in the Heck reaction), but isomerizes to an allyl palladium complex, which reacts with the amine to give the observed allyl amines. [Pg.268]


See other pages where Palladium allylic amination is mentioned: [Pg.175]    [Pg.502]    [Pg.820]    [Pg.129]    [Pg.24]    [Pg.514]    [Pg.93]    [Pg.94]    [Pg.696]    [Pg.697]    [Pg.697]    [Pg.700]    [Pg.700]    [Pg.702]    [Pg.712]    [Pg.458]    [Pg.80]    [Pg.82]    [Pg.132]    [Pg.132]    [Pg.133]    [Pg.277]    [Pg.356]    [Pg.726]    [Pg.48]    [Pg.245]    [Pg.248]    [Pg.414]    [Pg.640]   
See also in sourсe #XX -- [ Pg.590 ]

See also in sourсe #XX -- [ Pg.220 ]




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Allyl amine

Allyl amines palladium reactions

Allylic amination

Allylic amination, palladium-mediated

Allylic aminations

Allylic aminations, palladium-catalyze

Allyls palladium

Amines allylation

Palladium allylation

Palladium amines

Palladium catalysts allylic amination

Palladium catalyzed intermolecular allylic amination

Palladium-catalyzed, allylic amination

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