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Lactams from Beckmann rearrangement

Using this pulse sequence to estimate the nature of derivatization of Suwannee River fulvic acid with N-enriched hydroxylamine to leam more about the carbonyl functionality of fulvic acid, Thom et al.(76) obtained signals for the primary products as oximes. Additional signals of secondary products arising from Beckmann rearrangements of the initial oxime derivatives were identified as nitriles, secondary amides and lactams. The bands assigned to hydroxamic acid result from a reaction of esters with NH2OH and are evidence for the presence of esters in the fulvic acid. [Pg.72]

Ingredients. Nylon-6 is produced commercially from caprolactam [105-60-2] which is the most important lactam industrially. AH industrial production processes for caprolactam are multistep and produce ammonium sulfate [7783-20-2] or other by-products. Approximately 95% of the world s caprolactam is produced from cyclohexanone oxime [100-64-1] via the Beckmann rearrangement (144). The starting material for cyclohexanone can be... [Pg.233]

Regioselective Beckmann rearrangements were used as key steps in the synthesis of phosphonoalkyl azepinones (Scheme 36) [43b] and in a formal total synthesis of the protein kinase C inhibitor balanol (Scheme 37) the optically active azide 197 derived from cyclohexadiene mono-oxide was converted into ketone 198 in several steps. After preparation of the oxime tosylates 199 (2.3 1 mixture), a Lewis acid mediated regioselective Beckmann rearrangement gave the lactams 200 and 201 in 66% and 9% yield, respectively. Lactam 201 underwent a 3-e im-ination to give additional 200, which served as a key intermediate in a balanol precursor synthesis (Scheme 37) [43 cj. [Pg.157]

The stereochemical use of the Beckmann rearrangement in assigning configuration to ketoximes has already been referred to, and it also has a large-scale application in the synthesis of the textile polymer Nylon-6 from cyclohexanone oxime (78) via the cyclic amide (lactam, 79) ... [Pg.126]

The common name caprolactam comes from the original name for the Ce carboxylic acid, caproic acid. Caprolactam is the cyclic amide (lactam) of 6-aminocaproic acid. Its manufacture is from cyclohexanone, made usually from cyclohexane (58%), but also available from phenol (42%). Some of the cyclohexanol in cyclohexanone/cyclohexanol mixtures can be converted to cyclohexanone by a ZnO catalyst at 400°C. Then the cyclohexanone is converted into the oxime with hydroxylamine. The oxime undergoes a very famous acid-catalyzed reaction called the Beckmann rearrangement to give caprolactam. Sulfuric acid at 100-120°C is common but phosphoric acid is also used, since after treatment with ammonia the by-product becomes... [Pg.193]

In the presence of a catalytic amount of an antunony(V) salt (SbCU SbFe ), generated from antimony(V) chloride and silver hexafluoroantimonate, the Beckmann rearrangement of several ketoxime trimethylsilyl ethers proceeds smoothly to give the corresponding amides or lactams in good yields . ... [Pg.403]

The Beckmann rearrangement of cyclohexanone oxime catalysed by solid metaboric acid (286) has also been investigated (equation 94). When ketoximes, mixed with 286 (formed from boric acid at 100°C/0.1 Torr), are heated (140°C/7-42 h) the corresponding amides or lactams are produced in excellent yields (62-92%). Under the... [Pg.408]

Pure a,a-disubstimted a-amino acids were synthesized from the readily available /3-ketoesters using a Beckmann rearrangement followed by lactam protection and ring opening (equation 135). [Pg.430]

Beckmann rearrangement of the oxime from 3-phosphonoalkylcyclohexenones 401 afforded lactams and regioselective migration of the non-unsaturated substituent was observed (equation 164). [Pg.440]

Nine-membered lactam rings can also be produced by the Beckmann rearrangement. The azonane ring 420 was selectively formed from an eight-membered cyclic ketone 419 by a rearrangement/reduction sequence (equation 175). [Pg.444]

The Beckmann rearrangement is used in a similar way to produce the lactam 32, an intermediate in the synthesis of swainsonine 33. Stereoselective addition of dichloroketene to the enol ether 30 gave one isomer ( 95 5) of cyclobutanone 31. Beckmann rearrangement with a sulfonated hydroxylamine and dechlorination gave the lactam 32 in 34% yield over five steps7 from a precursor of 30. Note that the m-alkene 30 gives the trans cyclobutanone selectively. [Pg.253]

Hexahydroazocines. The synthesis of stable ketene aminal diphenylphosphates 46 was accomplished departing from the eight-membered iV-BOC or iV-COOPh protected lactams 45 via their potassium enolates (Scheme 13 <1998CC1757>). Azocane-2-one 45 was easily obtained from cycloheptanone 44 by Beckmann rearrangement of its cycloheptanone-oxime and subsequent protection of the amino moiety. [Pg.9]


See other pages where Lactams from Beckmann rearrangement is mentioned: [Pg.443]    [Pg.72]    [Pg.71]    [Pg.184]    [Pg.136]    [Pg.496]    [Pg.551]    [Pg.110]    [Pg.1415]    [Pg.156]    [Pg.156]    [Pg.159]    [Pg.64]    [Pg.155]    [Pg.578]    [Pg.416]    [Pg.437]    [Pg.462]    [Pg.463]    [Pg.58]    [Pg.488]    [Pg.526]    [Pg.658]    [Pg.778]    [Pg.658]    [Pg.551]    [Pg.496]    [Pg.136]    [Pg.569]    [Pg.569]    [Pg.778]    [Pg.249]    [Pg.46]    [Pg.319]    [Pg.488]   
See also in sourсe #XX -- [ Pg.509 ]




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Beckmann rearrangment

From Beckmann rearrangement

From lactams

Lactams rearrangement

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