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Nitrogen-stabilized oxyallyl cations

An endo-Selective Sequential Epoxidation-Oxyallyl Cycloaddition and the First Nitrogen-Stabilized Oxyallyl Cations. [Pg.79]

Epoxidations of chiral allenamides lead to chiral nitrogen-stabilized oxyallyl catioins that undergo highly stereoselective (4 + 3) cycloaddition reactions with electron-rich dienes.6 These are the first examples of epoxidations of allenes, and the first examples of chiral nitrogen-stabilized oxyallyl cations. Further elaboration of the cycloadducts leads to interesting chiral amino alcohols that can be useful as ligands in asymmetric catalysis (Scheme 2). [Pg.79]

The [4-1-3] cycloaddition between 2-aminofuran and oxyallyl cations, followed by base-induced elimination of the resulting adducts, was used in the synthesis of 3-aminotropones <05TL8475>. A chiral Lewis acid-catalyzed [4t-3] cycloaddition between furans and nitrogen-stabilized oxyallyl cations derived from allenamides was developed. As depicted below, the Cj-symmetric salen-based ligand is the most effective in promoting this asymmetric cycloaddition reaction <05JA50>. [Pg.188]

The chemistry of intramolecular [4+3J cycloaddition of nitrogen-stabilized oxyallyl cations derived from chiral allenamides, originally reported in 2003, was extended to the use of a furan tethered to either the a- or p-position of the allene. As demonstrated below, polycyclic compounds were synthesized in good yields and with a high diastereomeric ratio (d.r.)<04AG(E)615>. [Pg.144]

The synthesis of highly functionalized cyclohepta[l)]indoles was achieved through an efficient sequence of [4 + 3]-cycloaddition-cydization-elimination. The cycloaddition features nitrogen-stabilized oxyallyl cations derived from epoxidations of N-aryl-N-sulfonyl-substituted allenamides, while the cyclization and elimination employed an intramolecular Grignard addition and a useful one-step Chugaev process, respectively (14OL2180). [Pg.228]

A one-step Lewis acid-catalysed intermolecular 4- -3-cycloaddition of aromatic a,)3-unsaturated aldehyde and ketones (105) with epoxides (106) formed seven-membered oxacycles (107) under mild conditions (Scheme 34).The effect of oxygen-, sulfur-, and halogen-substituents on the reactivity of nitrogen-stabilized oxyallyl cations in 4- -3-cycloaddition reactions has been extensively investigated. Aza-oxyallyl cationic intermediates react with cyclopentadiene and furan via an aza-4 -I- 3-cycloaddition reaction to form bicyclic cycloadducts in moderate yields. The intramolecular formal 4- -4-cycloaddition of conjugated enynes with an e-deflcient cyclobutene (108) yielded a strained six-membered cyclic allene (109) that isomerized to a 1,3-cyclohexadiene (110). This intermediate underwent a thermal or acid-promoted six-electron electrocyclic ring opening to yield a 2,4,6-cyclooctatrienone (111) (Scheme 35). ... [Pg.471]

A number of different furan-based approaches to the synthesis of 7-membered ring systems were reported in 2003. In the novel example shown below, the furan participated in an intramolecular [4+3] cycloaddition with nitrogen-stabilized chiral oxyallyl cation to form polycyclic structures <03JA12694>. Attempts to construct the [4.4.1] bicychc BC ring system of ingenol via a type-II intramolecular [4+3] cycloaddition between furan and an oxyallyl cation produced the desired product but only in 14% yield <03JOC7899>. [Pg.163]


See other pages where Nitrogen-stabilized oxyallyl cations is mentioned: [Pg.389]    [Pg.321]    [Pg.432]    [Pg.439]    [Pg.440]    [Pg.389]    [Pg.321]    [Pg.432]    [Pg.439]    [Pg.440]    [Pg.565]    [Pg.608]    [Pg.456]   
See also in sourсe #XX -- [ Pg.188 ]

See also in sourсe #XX -- [ Pg.144 ]




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Cation stability

Cation stabilization

Cationic nitrogens

Cationic stability

Cationic stabilization

Nitrogen stability

Oxyallyl cation

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