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Intermolecular Hydroamination

Enantioselective, multiple centers 153, 166,189 Hydroamination Intermolecular Alkene 30 Alkyne 1 Intramolecular Alkene 30 Alkyne 13,170 Hydrogen peroxide Oxidation of alcohols 26, 86 Hydrogenolysis of epoxide 1 Hydrozirconation 32... [Pg.112]

A catalytic system comprising TiCNMe ), LiNCSilVIej) and IMes has been developed for the intermolecular hydroamination of terminal aliphatic alkynes (1-hexyne, 1-octyne, etc.) with anilines [toluene, 100°C, 10 mol% TiCNMe ) ]. Markovnikov products were dominant. Substituted anilines reacted similarly. High conversions (85-95%) were observed with specific anilines. The optimum Ti/IMes/ LiN(SiMe3)2 ratio was 1 2 1. However, the nature of the active species and especially the role of LiN(SiMe3)2 are unclear [74]. [Pg.42]

Fig. 2.16 Copper-amido complexes as catalysts for the intermolecular hydroamination of electron-deficient alkenes... Fig. 2.16 Copper-amido complexes as catalysts for the intermolecular hydroamination of electron-deficient alkenes...
The well-defined copper complexes 94 and 95 (Fig. 2.16) have been used as catalysts for the intermolecular hydroamination of electron-deficient alkenes [Michael acceptors, X=CN, C(=0)Me, C(=0)(0Me)] and vinyl arenes substituted... [Pg.43]

The proposed reaction mechanism involves intermolecular nucleophilic addition of the amido ligand to the olefin to produce a zwitterionic intermediate, followed by proton transfer to form a new copper amido complex. Reaction with additional amine (presnmably via coordination to Cn) yields the hydroamination prodnct and regenerates the original copper catalyst (Scheme 2.15). In addition to the NHC complexes 94 and 95, copper amido complexes with the chelating diphosphine l,2-bis-(di-tert-bntylphosphino)-ethane also catalyse the reaction [81, 82]. [Pg.44]

Although efficient for the intramolecular hydroamination/cyclization (abbreviated IH below) of aminoalkenes (see below), organolanthanides exhibit a much lower catalytic activity for the intermolecular hydroamination of aUcenes, as exemplified by the reaction of n-PrNH2 with 1-pentene catalyzed by a neodymium complex (Eq. 4.17) [127]. [Pg.100]

In 1992, Bergman et al. reported that zirconium bisamides Cp2Zr(NHR)2 catalyze the intermolecular hydroamination of alkynes with sterically hindered primary amines to give enamines or their tautomeric imines (e.g., Eq. 4.77) [126]. [Pg.124]

Coupled intermolecular hydroaminations and intramolecular cycUzations give pyrroles resulting from isomerization of the initially formed exomethylene dihydropyrrole derivatives (Eq. 4.85) [137]. [Pg.127]

The intermolecular hydroamination of alkynes catalyzed by late transition metals was reported for the first time in 1999. Ruthenium carbonyl catalyzes the Markovnikov hydroamination of terminal alkynes with PhNHMe to give enamines (Eq. 4.88) [305]. [Pg.127]

Due to its marked atom economy, the intramolecular hydroamination of alkenes represents an attractive process for the catalytic synthesis of nitrogen-containing organic compounds. Moreover, the nitrogen heterocycles obtained by hydroamination/cyclisation processes are frequently found in numerous pharmacologically active products. The pioneering work in this area was reported by Marks et al. who have used lanthanocenes to perform hydroamination/cyclisation reactions in 1992. These reactions can be performed in an intermolecular fashion and transition metals are by far the more efficient catalysts for promotion of these transformations via activation of the... [Pg.356]

Organometallic complexes of the /-elements have been reported that will perform both intra-and intermolecular hydroamination reactions of alkenes and alkynes, although these lie outside of the scope of this review.149-155 Early transition metal catalysts are not very common, although a number of organometallic systems exist.156-158 In these and other cases, the intermediacy of a metal imido complex LnM=NR was proposed.159,160 Such a species has recently been isolated (53) and used as a direct catalyst precursor for N-H addition to alkynes and allenes (Scheme 35).161,162... [Pg.290]

Intermolecular hydroamination of 1-alkynes with anilines has recently been performed using [Rh(COD)2]+ in combination with three equivalents of tricyclohexylphosphine (1.5 mol. % catalyst) at 50 °C to yield the corresponding imines (Equation (16)) 172... [Pg.292]

Chang et al. reported a mild tandem intramolecular hydroamination of yne amines to form an endo-adduct intermediate, which reacts with electron-deficient azides to produce cyclic amidines <06JA12366>. Selected examples of an interesting synthetic route to tropene derivatives 165 via a dual hydroamination strategy is shown below. This one-step reaction makes use of a palladium catalyst and takes place by sequential intermolecular hydroamination of cycloheptatriene with aryl, heteroaryl, and primary alkyl amines to generate intermediate 166, followed by transannular intramolecular hydroamination <06JA8134>. [Pg.336]

In addition to C-alkylation reactions, hydroaminations are of great interest in organic synthesis [85, 86]. Recently, Shibasaki and coworkers developed a Bi(OTf)3-catalyzed intermolecular hydroamination using styrenes [87] and... [Pg.136]

In order to find a suitable catalyst for intermolecular hydroaminations of 1,3-dienes, several metal sources were screened for the reaction of diene la (4 equiv) with carbamate 2a, and Bi(OTf)3 gave promising results [21, 22], The optimization studies using Bi(OTf)3 are summarized in Table 1 and show that 10 mol% of... [Pg.180]

Table 2 Bi(OTf)3/Cu(CH3CN)4PF6/dppe-catalyzed intermolecular hydroamination of la with various carbamates, sulfonamides, and carboxamides... Table 2 Bi(OTf)3/Cu(CH3CN)4PF6/dppe-catalyzed intermolecular hydroamination of la with various carbamates, sulfonamides, and carboxamides...
Table 5 Intermolecular hydroamination of various 1,3-dienes with carbamate 2d... Table 5 Intermolecular hydroamination of various 1,3-dienes with carbamate 2d...
The utility of cationic bismuth species for C-N bond formation has been described in this chapter. The key for successful intermolecular 1 1 hydroamination of... [Pg.196]

Alkene hydroamination has been known for many years, but has been little used as a method in organic synthesis. Tobin Marks of Northwestern recently published a series of three papers that will make this transformation much mote readily accessible. In the first (J. Am. Chem. Soc. 125 12584,2003) he describes the use of a family of lanthanide-derived catalysts for intermolecular hydroamination of alkynes (to make imines, not illustrated) and alkenes. With aliphatic amines, the branched (Markownikov) product is observed, 1 — 2. With styrenes, the linear product is formed. When two alkenes are present, the reaction can proceed (3 —> 4) to form a ring, with impressive regioselectivity. [Pg.20]

Intermolecular hydroamination or hydroarylation reactions of norbornene and cyclo-hexadiene carried out with catalytic amounts of Brpnsted or Lewis acid in ionic liquids have been found to provide higher selectivity and yields than those performed in classical organic solvents. This effect was attributed to the increases of the acidity of the medium and stabilization of ionic intermediates through the formation of supramolec-ular aggregates with the ionic liquid.38... [Pg.323]

The intramolecular anti-Markovnikov hydroamination of l-(3-aminopropyl)vinyl-arenes (71 R = H, Me, CH2OMe, CH2OTBS) in the presence of a rhodium catalyst to form 3-arylpiperidines (72) has been reported. In contrast to intermolecular hydroamination of vinylarenes, which occurs in high yields in the presence of rhodium catalysts... [Pg.336]


See other pages where Intermolecular Hydroamination is mentioned: [Pg.42]    [Pg.43]    [Pg.712]    [Pg.717]    [Pg.146]    [Pg.153]    [Pg.179]    [Pg.179]    [Pg.179]    [Pg.179]    [Pg.180]    [Pg.180]    [Pg.180]    [Pg.184]    [Pg.188]    [Pg.188]    [Pg.189]    [Pg.157]    [Pg.331]    [Pg.485]   
See also in sourсe #XX -- [ Pg.32 ]

See also in sourсe #XX -- [ Pg.80 , Pg.136 ]




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1,3-diene intermolecular hydroamination

1.3- Dienes, intermolecular hydroamination

Alkenes intermolecular hydroamination

Alkenes, activated, intermolecular hydroamination

Alkyl intermolecular hydroamination

Alkylamines intermolecular hydroamination

Alkynes intermolecular hydroamination

Gold intermolecular hydroamination

Hydroamination

Hydroamination intermolecular processes

Hydroaminations

Intermolecular Asymmetric Hydroamination

Intermolecular Hydroamination of 1,3-Dienes

Intermolecular reactions hydroamination

Vinyl arenes, intermolecular hydroamination

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