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Spiro -ones, synthesis

Anacardio, R., Arcadi, A., D AnnibaHe, G. and Marinelli, F. (1995) Palladium-catalyzed selective carbonylation of vinyl triflates in the presence of 2-iodophenols a new route to 3-spiro-ffised benzofuran-2 (3H)-ones. Synthesis, 831—836. [Pg.246]

Novel chiral auxiliary, 2 -isopropyl-5 -methylbenzoxazine-spiro-[2.1 ]cyclo-hexan-4-one, and its application to the synthesis of carbapenem antibiotics 97YGK858. [Pg.229]

The first chapter of the book deals with leuco-spiropyrans and related spiro compounds, which constitute one of the classes of leuco compounds not of the redox type. Such materials are photochromic, and are of major technical importance. The author, Hiroyuki Nakazumi of the Department of Applied Chemistry at the University of Osaka Prefecture, is well known for his researches in functional dye chemistry, particularly photochromic materials, and he provides a very useful update of the field, covering mechanisms, synthesis, spectra and applications, together with a useful section on approaches to near-infrared absorbing photochromic dyes. [Pg.309]

Hydroamination of olefins has received considerable attention this year as a route to functionalized piperidines and spiropiperidines, particularly in regard to the investigation of new catalysts. In the synthesis of spiro-piperidines, two new mild and more general intramolecular hydroamination protocols were developed this year. One protocol uses a cationic gold-phosphine complex (Au[P(fBu)2(o-biphenyl)]Cl) as the catalyst... [Pg.335]

Also in 2001, Azizian described a one-pot diastereoselective synthesis of 2-sub-stituted l,l,2,3,3aa,3b) ,4,5,6,8,8aa-decahydro-8-(spiro-3-indolino-2-one)pyrrolo[3,4-b] pyrrolizine-l,3-dione (151) in good yield and diastereomeric excess using microwave irradiation (Scheme 9.46). [Pg.322]

An interesting approach for the synthesis of spiro-OZTs and oxazine-2-thiones in D-psicofuran and D-fructopyran series involved as a key-step the reaction with trimethylsilyl isothiocyanate, azide or cyanide.8 The reaction mechanism is similar to the one described above—after nucleophilic attack on the anomeric position, the formed isothiocyanate undergoes spontaneous cyclization to afford the corresponding spiro-thionocarbamate. [Pg.143]

Sattelkau and Eilbracht90 have exploited the Claisen rearrangement of allyl vinyl ethers in their synthesis of several spiro compounds. As shown below in equation 62, 7,9-dimethyl-l,4-dioxa-spiro[4,5]decan-8-one, 118, was converted to a ,/J-unsaturated ester 119 which was reduced to allyl alcohol 120906. Allyl vinyl ether 121 underwent a rhodium-catalyzed Claisen rearrangement to afford 7r,13r-dimethyl-l,4-dioxa-(8rC9)-dispiro[4.2.4.2]tetradecan-10-one (122) in 36% yield. [Pg.728]

As part of our efforts to develop new efficient one-pot methodologies to access novel heterocyclic structures, we also reported an efficient synthesis of spiro[4,61-lactones and lactames by sequential multicomponent reaction/metal-catalyzed carbo-cyclizations from simple five-membered cyclic (3-ketoesters and (3-ketoamides,... [Pg.265]

Some representative examples of the [3+2] annulatlon are listed in Table 1. Both cyclic and acyclic allenophiles participate in the reaction, a-Alkylidene ketones undergo annulation to provide access to spiro-fused systems, and acetylenic allenophiles react to form cyclopentadiene derivatives. The reactions of (E)- and (Z)-3-methy1-3-penten-2-one illustrate the stereochemical course of the annulation, which proceeds with a strong preference for the suprafacial addition of the allene to the two-carbon allenophile. The high stereoselectivity displayed by the reaction permits the stereocontrol led synthesis of a variety of mono- and polycyclic systems. [Pg.142]

As part of an extensive study of the 1,3-dipolar cycloadditions of cyclic nitrones, Ali et al. (392-397) found that the reaction of the 1,4-oxazine 349 with various dipolarophiles afforded the expected isoxazolidinyloxazine adducts (Scheme 1.78) (398). In line with earlier results (399,400), oxidation of styrene-derived adduct 350 with m-CPBA facilitated N—O cleavage and further oxidation as above to afford a mixture of three compounds, an inseparable mixture of ketonitrone 351 and bicyclic hydroxylamine 352, along with aldonitrone 353 with a solvent-dependent ratio (401). These workers have prepared the analogous nitrones based on the 1,3-oxazine ring by oxidative cleavage of isoxazolidines to afford the hydroxylamine followed by a second oxidation with benzoquinone or Hg(ll) oxide (402-404). These dipoles, along with a more recently reported pyrazine nitrone (405), were aU used in successful cycloaddition reactions with alkenes. Elsewhere, the synthesis and cycloaddition reactions of related pyrazine-3-one nitrone 354 (406,407) or a benzoxazine-3-one dipolarophile 355 (408) have been reported. These workers have also reported the use of isoxazoles with an exocychc alkene in the preparation of spiro[isoxazolidine-5,4 -isoxazolines] (409). [Pg.61]


See other pages where Spiro -ones, synthesis is mentioned: [Pg.248]    [Pg.227]    [Pg.85]    [Pg.89]    [Pg.152]    [Pg.188]    [Pg.35]    [Pg.452]    [Pg.22]    [Pg.198]    [Pg.165]    [Pg.35]    [Pg.694]    [Pg.104]    [Pg.94]    [Pg.99]    [Pg.103]    [Pg.360]    [Pg.139]    [Pg.99]    [Pg.78]    [Pg.503]    [Pg.513]    [Pg.12]    [Pg.19]    [Pg.171]    [Pg.1237]    [Pg.78]    [Pg.173]   
See also in sourсe #XX -- [ Pg.1454 , Pg.1455 ]

See also in sourсe #XX -- [ Pg.1454 , Pg.1455 ]




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Spiro- -2-ones

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