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Ring opening 2-amino alcohol

Alberola et al. [45] reported the regioselective ring opening of tetrahydro-l,3-oxazines to give ) -amino alcohols (see Table 5, entry 4), with a wide variety of alkyl-, alkenyl-, and arylmagnesium halides. The major product was the ring-opened primary alcohol. [Pg.568]

Nucleophilic ring opening of epoxides by ammonia (Section 16.12) The strained ring of an epoxide is opened on nucleophilic attack by ammonia and amines to give p-amino alcohols. Azide ion also reacts with epoxides the products are p-azido alcohols. [Pg.927]

Due to the abundance of epoxides, they are ideal precursors for the preparation of P-amino alcohols. In one case, ring-opening of 2-methyl-oxirane (18) with methylamine resulted in l-methylamino-propan-2-ol (19), which was transformed to 1,2-dimethyl-aziridine (20) in 30-35% yield using the Wenker protocol. Interestingly, l-amino-3-buten-2-ol sulfate ester (23) was prepared from l-amino-3-buten-2-ol (22, a product of ammonia ring-opening of vinyl epoxide 21) and chlorosulfonic acid. Treatment of sulfate ester 23 with NaOH then led to aziridine 24. ... [Pg.65]

Ring-opening of diastereomerically pure vinylaziridine 131, prepared by azir-idination of butadiene with 3-acetoxyaminoquinazolinone 130 [52], yielded acetate 132 with inversion of configuration, together with amino alcohol 133 with retention (Scheme 2.34) [53]. The formation of 133 can be explained by assuming participation by the quinazolinone carbonyl oxygen, which produces an intramolecular reaction with the aziridine carbon with retention of configuration. [Pg.53]

Ring-opening of aziridine-2-carboxylates with alcohols has been reported to give (3-alkoxy-a-amino esters [16, 102]. Treatment of as-aziridine 127 (Scheme 3.45) with alcohol in the presence of a catalytic amount of boron trifluoride etherate afforded P-alkoxy-ot-amino esters 128 in 57-100% yields [16,102a], The reaction is both regio- and stereoselective, affording 128 as the only product. [Pg.91]

Aziridine lactone 235 (Scheme 3.87) underwent ring-opening with allyl alcohol to give a 53% yield of a-amino lactone 236, which was successfully transformed to the unnatural enantiomer of polyoxamic acid (—)-237 [32],... [Pg.105]

The regioselective ring-opening of vinyloxiranes by nitrogen nucleophiles offers an attractive route to vie-amino alcohols, compounds of much recent interest. As with oxygen nucleophiles, the stereochemistry of the reaction can be controlled by choice of reaction conditions aminolysis of 25, for example, affords anti-amino alcohol 26 in excellent yield and diastereoselectivity (Scheme 9.21) [48, 96, 97], and... [Pg.330]

Oxetanes are significantly less reactive with nucleophiles due to diminished ring strain. Under certain conditions, however, amines can open oxetanes to give amino alcohols. tert-Butylamine reacts with oxetanes in the presence of Yb(OTf)3 to give 3-hydroxy amines. Lithium tetrafluorohorate has also been used for this... [Pg.505]

The enantioseiective hydrogenation of a-amino ketones has been applied extensively to the synthesis of chiral drugs such as the / -agonist SR 58611 (Sanofi Cie). m-Chlorstyreneoxide was obtained via carbene-induced ring closure of the amino alcohol. Epoxide-opening by a chiral amine obtained via a ruthenium-catalyzed hydrogenation of an enamide has led to the desired compound where... [Pg.1180]

The regioselective ring-opening of epoxides 34 (R1 = Me, vinyl, Ph etc.) with aminolead compounds R23 PbNEt2, prepared from lithium diethylamide and R23 PbBr, gives good yields of the amino alcohols 3567. [Pg.544]

The regioselective ring-opening of the chiral epoxides 36 (R1 = Me, Pr or Ph) with aliphatic amines 37 (R2 = t-Bu, PI1CH2 or C6H13) in the presence of titanium tetraiso-propoxide leads to mixtures of the amino alcohols 38 and 39, in which the former predominate70. [Pg.545]

Condensation of [3- or "y-amino alcohols with aldehydes or ketones RR CO gives the product 27. In solution the position of the equilibrium varies with R and R, and with the solvent (73). When the carbonyl reactant is a substituted benzaldehyde, the solid is found (IR, KBr) to comprise molecules of the open-chain structure 27a, whereas aliphatic aldehydes and ketones give crystals of dihydro- 1,3-benzoxazines, 27b. An interesting case is that of the condensation product of o-hydroxybenzylamine with cyclopentanone, for which McDonagh and Smith (73) suggest that ring and chain tautomers coexist in the solid. [Pg.151]

A variety of ie.so-epoxidcs could be selectively ring-opened this way with e.e. s as high as 97% [28], The azides can be converted to 1,2-amino alcohols, which are very desirable synthetic intermediates. Surprisingly, the mechanism of the ARO (asymmetric ring-opening) was more complicated than expected [29], First, it turned out that the chloride ion in Cr-salen was replaced by azide. Secondly, water was needed and HN3 rather than Me3SiN3 was the reactant nucleophile. Thirdly, the reaction rate was found to be second order in catalyst concentration, minus one in epoxide (cyclopentene oxide), and zero order in HN3 [30],... [Pg.314]


See other pages where Ring opening 2-amino alcohol is mentioned: [Pg.288]    [Pg.290]    [Pg.349]    [Pg.317]    [Pg.9]    [Pg.343]    [Pg.281]    [Pg.22]    [Pg.389]    [Pg.212]    [Pg.129]    [Pg.43]    [Pg.52]    [Pg.53]    [Pg.230]    [Pg.266]    [Pg.329]    [Pg.452]    [Pg.121]    [Pg.129]    [Pg.1048]    [Pg.34]    [Pg.85]    [Pg.85]    [Pg.98]    [Pg.194]    [Pg.227]    [Pg.206]    [Pg.216]    [Pg.143]    [Pg.447]    [Pg.137]    [Pg.661]    [Pg.66]    [Pg.162]    [Pg.111]    [Pg.282]    [Pg.329]   
See also in sourсe #XX -- [ Pg.12 , Pg.411 , Pg.413 ]

See also in sourсe #XX -- [ Pg.12 , Pg.411 , Pg.413 ]




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