Big Chemical Encyclopedia

Chemical substances, components, reactions, process design ...

Articles Figures Tables About

Cycloaddition reactions cyclic nitronate preparation

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]

We are the first group to succeed with the highly enantioselective 1,3-dipolar cycloadditions of nitronates [75]. Thus, the reaction of 5,6-dihydro-4H-l,2-oxazine N-oxide as a cyclic nitronate to 3-acryloyl-2-oxazilidinone, at -40 °C in dichloro-methane in the presence of MS 4 A and l ,J -DBFOX/Ph-Ni(II) complexes, gave a diastereomeric mixture of perhydroisoxazolo[2,3-fe][l,2]oxazines as the ring-fused isoxazolidines in high yields. The J ,J -DBFOX/Ph aqua complex prepared from... [Pg.272]

Recently, Denmark and coworkers have developed a new strategy for the construction of complex molecules using tandem [4+2]/[3+2]cycloaddition of nitroalkenes.149 In the review by Denmark, the definition of tandem reaction is described and tandem cascade cycloadditions, tandem consecutive cycloadditions, and tandem sequential cycloadditions are also defined. The use of nitroalkenes as heterodienes leads to the development of a general, high-yielding, and stereoselective method for the synthesis of cyclic nitronates (see Section 5.2). These dipoles undergo 1,3-dipolar cycloadditions. However, synthetic applications of this process are rare in contrast to the functionally equivalent cycloadditions of nitrile oxides. This is due to the lack of general methods for the preparation of nitronates and their instability. Thus, as illustrated in Scheme 8.29, the potential for a tandem process is formulated in the combination of [4+2] cycloaddition of a donor dienophile with [3+2]cycload-... [Pg.274]

Elsewhere, Heaney et al. (313-315) found that alkenyloximes (e.g., 285), may react in a number of ways including formation of cyclic nitrones by the 1,3-APT reaction (Scheme 1.60). The benzodiazepinone nitrones (286) formed by the intramolecular 1,3-APT will undergo an intermolecular dipolar cycloaddition reaction with an external dipolarophile to afford five,seven,six-membered tricyclic adducts (287). Alternatively, the oximes may equilibrate to the corresponding N—H nitrones (288) and undergo intramolecular cycloaddition with the alkenyl function to afford five,six,six-membered tricyclic isoxazolidine adducts (289, R = H see also Section 1.11.2). In the presence of an electron-deficient alkene such as methyl vinyl ketone, the nitrogen of oxime 285 may be alkylated via the acyclic version of the 1,3-APT reaction and thus afford the N-alkylated nitrone 290 and the corresponding adduct 291. In more recent work, they prepared the related pyrimidodiazepine N-oxides by oxime-alkene cyclization for subsequent cycloaddition reactions (316). Related nitrones have been prepared by a number of workers by the more familiar route of condensation with alkylhydroxylamines (Scheme 1.67, Section 1.11.3). [Pg.51]

Stereoselective cycloaddition between functionalized six-membered cyclic nitrone 166 derived from o-lyxose and sugar alkenes was employed for the synthesis of aza-C-disaccharides [72]. Reaction of nitrone 166 and alkene 167 prepared from methyl a-o-mannopyranoside in toluene at reflux led to the isolation of a crystalline cycloadduct 168 in 84% yield. The isoxazohdine 168 was acetylated and cleaved using Mo(CO)6. This was followed by deoxygenation and routine deprotection to give the aza-C-disaccharide 169, isolated as its hydrochloride (44% overall from 168). [Pg.320]

Functionally modified cyclic nitrones appear to offer synthetic potential. However, the fact that such nitrones have not been so utilized reflects the problems associated with their preparation. Nitrones of type (42) have now been prepared in high yield, and their 1,3-dipolar cycloaddition reactions investigated. ... [Pg.206]

Nitrones can undergo a variety of synthetically useful reactions 1,3-dipolar cycloaddition with alkenes and allqmes to isoxazolidines, nucleophilic addition which provide hydrojgrlamines, or Sm mediated cross couplings with carhonyl compounds affording vicinal amino alcohols.Recently, special attention is focused on the preparation and application of the optically pure cyclic nitrones, being used in the synthesis of biologically important molecules. ... [Pg.345]

Diastereoselective intramolecular cycloaddition of nitrones is useful for constructing nitrogen- containing cyclic structures. The reaction serves as a key step in a number of natural product syntheses.63 Tufarriello and coworkers have used this strategy for preparing cocaine and other alkaloids.74 As a classical example, enantioselective total synthesis of (+)-luciduline is presented in Scheme 8.13, in which a useful feature of the 1,3-dipolar addition of nitrones is nicely illustrated.75... [Pg.253]

However, far the most powerful synthetical methodology involving cycloaddition chemistry of nitroalkenes is the combination of a hetero Diels-Alder reaction with a 1,3-dipolar cycloaddition of the resulting nitrone. Up to six stereo-genic centers may be constructed in the course of this protocol, and a multitude of preparative options results from applying either intra- or intermolecular varieties of the single steps and from the different modes to connect the resulting cyclic entities (Fig. 4-13). [Pg.71]


See other pages where Cycloaddition reactions cyclic nitronate preparation is mentioned: [Pg.12]    [Pg.22]    [Pg.168]    [Pg.224]    [Pg.353]    [Pg.37]    [Pg.53]    [Pg.828]    [Pg.867]    [Pg.47]    [Pg.63]    [Pg.674]    [Pg.713]    [Pg.19]    [Pg.215]    [Pg.19]    [Pg.315]    [Pg.158]    [Pg.328]    [Pg.681]    [Pg.203]    [Pg.203]    [Pg.279]   
See also in sourсe #XX -- [ Pg.2 , Pg.4 ]

See also in sourсe #XX -- [ Pg.2 , Pg.4 ]




SEARCH



Cyclic nitronates

Cyclic nitrone

Cyclic nitrones

Cyclic preparation

Cyclic reactions

Nitronates Preparations

Nitronates cyclic nitronate preparation

Nitronates cycloadditions

Nitrone reactions

Nitrones cycloaddition

Nitrones, cycloaddition reactions

Nitrones, cycloadditions

Nitrones, reactions

© 2024 chempedia.info