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Cyclobutanes amino- from

A particularly good route to four-membered rings is via a (2-i-2]-cycloaddition. With a suitably functionalized precursor, this is a good method for preparing amino-cyclobutane amino acids. Reaction of enamine 7319 (derived from isobutyraldehyde)... [Pg.273]

Reduced pyrimidines are much less stable toward hydrolysis than the fully conjugated analogs, and this is often used synthetically to produce amino acids and diamines. The BH3 reduction of cyclic amidines (1,4,5,6-tetrahydropyr-imidines) to hexahydropyrimidines, and their subsequent hydrolysis was mentioned above <1999JFIC105>, but there are many more examples. For instance, m-cyclobutane /5-amino acids 544 can be prepared from the cyclobutane derivatives 542 formed by the [2-F2] photocycloaddition reaction between uracil and ethylene <2002TL6177, 2004TL7095, 2006SL1394>. [Pg.183]

Irradiation of 2-[N-(pentafluorophenyI)amino]-3-phenylcyclopropenone promotes decarbonylation to give N-(pentafluorophenyl)phenylethynamine and 2-phenyl-3-[N-(pentafluorophenyl)amino]acrylic acid by a process for which there is no known precedent,and the photoextrusion of carbon monoxide from l,3-bis(ethylenedioxy)indan-2-one has been used as the first step in a new synthesis of 1,2-dioxobenzocyclobutene. This represents an unusual example of the decarbonylation of a five-membered cyclic ketone in the preparation of a highly strained and functionalised cyclobutane derivative. The photolysis of a-naphthaleneacetic acid in aqueous solution proceeds by decarboxylation and oxidation of the aromatic ring, and has been carried out at a variety of different wavelengths. The primary step occurs by pseudo-first order kinetics and the optimum photolysis rate has been observed using Ti02 as photocatalyst. Within the cavity of P-cyclodextrin, naproxene (129) has been photodecarboxylated to... [Pg.175]

Carbon-Oxygen Bond Formation. CAN is an efficient reagent for the conversion of epoxides into /3-nitrato alcohols. 1,2-cA-Diols can be prepared from alkenes by reaction with CAN/I2 followed by hydrolysis with KOH. Of particular interest is the high-yield synthesis of various a-hydroxy ketones and a-amino ketones from oxiranes and aziridines, respectively. The reactions are operated under mild conditions with the use of NBS and a catalytic amount of CAN as the reagents (eq 25). In another case, N-(silylmethyl)amides can be converted to A-(methoxymethyl)amides by CAN in methanol (eq 26). This chemistry has found application in the removal of electroauxiliaries from peptide substrates. Other CAN-mediated C-0 bondforming reactions include the oxidative rearrangement of aryl cyclobutanes and oxetanes, the conversion of allylic and tertiary benzylic alcohols into their corresponding ethers, and the alkoxylation of cephem sulfoxides at the position a to the ester moiety. [Pg.84]

Four-membered ring cyclobutane derivatives were also investigated. The synthesis proceeded from the Boc-protected 3-amino cyclobutanone [71]. The phosphorus-carbon bond formation was achieved using the silyl-Abramov reaction in an approximate 1 4 ratio of cis- and frans-isomers [72]. The two isomers can be... [Pg.59]


See other pages where Cyclobutanes amino- from is mentioned: [Pg.229]    [Pg.68]    [Pg.1265]    [Pg.21]    [Pg.63]    [Pg.181]    [Pg.278]    [Pg.263]    [Pg.103]    [Pg.330]    [Pg.215]    [Pg.741]    [Pg.200]    [Pg.418]    [Pg.84]    [Pg.103]    [Pg.99]    [Pg.251]    [Pg.100]    [Pg.99]    [Pg.1747]    [Pg.2743]   


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