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Cyanation Cyclization reactions

In addition to this, asymmetric 1,3-dipolar cyclization reactions of nitrones with olefins,40 41 catalytic enantioselective cyanation of aldehydes,42 catalytic enantioselective animation,43 and aza-Michael reactions44 have been reported, and high enantioselectivities are observed. [Pg.402]

Perimidinones are available from 1,8-naphthalenediamines in cyclization reactions with potassium cyanate, carbonate, and chlorocarbonate esters, phosgene, and urea all methods give satisfactory results. 2-Alkoxy- and aryloxyperimidines are readily available by nucleophilic substitution reactions in the 2-position <81RCR8I6>. [Pg.220]

Synthesis from OC-Amino Acids and Related Compounds. Addition of cyanates, isocyanates, and uiea derivatives to a-amino acids yields hydantoin piecuisois. This method is called the Read synthesis (2), and can be considered as the reverse of hydantoin hydrolysis. Thus the reaction of a-amino acids with alkaline cyanates affords hydantoic acids, which cyclize to hydantoins in an acidic medium. [Pg.253]

Diones are normally synthesized from /3-hydroxy acids in two steps first, conversion into carbamates by reaction with sodium cyanate, and then cyclization with thionyl chloride (Scheme 103) (54JCS839). Alternative preparations utilize oxetanes, which may be combined either with isocyanates in the presence of boron trifluoride (68JAP6808278) or with S-alkylthioureas (Scheme 104) (69ZOR1844). In the last example the initial products are imines (224) which may readily be hydrolyzed to the required diones. Similar methods can be applied to the synthesis of tetrahydro-l,3-thiazine-2,4-diones, and, for instance, the 4-oxo-2-thioxo derivative (225) is obtained from /3-propiolactone and dithiocarbamic acid (Scheme 105) (48JA1001). [Pg.1030]

The oxazolidin-2-ones 53 (R = H=CCH=CH2 or COEt) are obtained in a one-pot reaction of amino alcohol carbamates 52 with sodium hydroxide, followed by allyl bromide or propi-onyl chloride (94TL9533). A modified procedure for the preparation of chiral oxazolidin-2-ones 56 from a-amino acids 54, which avoids the hazardous reduction of the acids with borane and the intermediacy of water-soluble amino alcohols, is treatment of the methyl ester of the amino acid with ethyl chloro-formate to give 55, followed by reduction with sodium borohydride and thermal ring-closure of the resulting carbamate f95SC561). The 2-prop-ynylcarbamates 57 (R = Ts, Ac, Bz, Ph or allyl) cyclize to the methyleneoxazolidinones 58 under the influence of silver cyanate or copper(I) chloride/triethylamine (94BCJ2838). [Pg.199]

Me3SiCN is a convenient, reactive cyanide donor in transition metal-catalyzed processes. The Pd-catalyzed reaction of aryl iodides with Me3SiCN is useful for the synthesis of aryl cyanides.257 Me3SiCN works also as an effective co-catalyst for the Pd-catalyzed cyanation of aryl iodides with KCN.258 Allylic acetates, carbonates, and the related compounds undergo the Pd-catalyzed cyanation with Me3SiCN.259-261 The tandem cyclization-cyanation reaction of 2-bromo-l,6-heptadienes with Me3SiCN proceeds under catalysis by an Ni complex (Equation (68)).262... [Pg.322]

Intermediate ureido derivatives may be isolated in many of these reactions by working at lower temperatures as with l-methyl-4-methylaminoimidazole-5-iV-methylcarboxamide (341) which with urea at 140 °C in the presence of hydrogen chloride gave the ureidoimidazole (342). This then cyclized to theobromine with hot dilute acid (Scheme 136) (28CB1409). Potassium cyanate can sometimes replace urea, and with this reagent (341) was readily converted into caffeine (Scheme 136) (28CB1409), but on the other hand 5-amino-2-methylthio-l-methylimidazole-4-carboxamide failed to react. [Pg.588]

Another way to form a-aminoketones from a-amino acids is via the Dakin-West reaction, in which amino acids are treated with aliphatic acid anhydrides to give ketone amides. Thus, reaction of ( )-phenylalanine with the appropriate aliphatic acid anhydrides followed by acidic hydrolysis afforded keto-amide 1271. Cyclization of 1272 with potassium cyanate gave 5-alkyl-4-benzyl-l,3-dihydroimidazol-2-ones 1273 (Scheme 322) <2002JHC375>. [Pg.307]

The shortcomings of the method in Chart IV have been overcome by an acid-catalyzed ester-amide cyclization step as outlined in Chart V. For example, reaction of ethyl hydrazinoacetate hydrochloride with potassium cyanate proceeded smoothly in aqueous solution to give ethyl 3-aminohydantoate which was converted into the respective 3-(benzylideneamino)hydantoate, by reaction with a substituted ben-... [Pg.42]


See other pages where Cyanation Cyclization reactions is mentioned: [Pg.4]    [Pg.359]    [Pg.359]    [Pg.217]    [Pg.477]    [Pg.420]    [Pg.83]    [Pg.905]    [Pg.392]    [Pg.283]    [Pg.42]    [Pg.83]    [Pg.1022]    [Pg.83]    [Pg.442]    [Pg.263]    [Pg.331]    [Pg.8]    [Pg.899]    [Pg.1022]    [Pg.72]    [Pg.442]    [Pg.577]    [Pg.1383]    [Pg.1385]    [Pg.29]    [Pg.577]    [Pg.83]    [Pg.898]    [Pg.36]   


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Cyanate

Cyanate reactions

Cyanates

Cyanates reactions

Cyanation

Cyanations

Cyclization reactions

Reactions cyanation

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