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Multicomponent fluorous-phase

Furthermore, multicomponent reactions can also be performed under fluorous-phase conditions, as shown for the Ugi four-component reaction [96], To improve the efficiency of a recently reported Ugi/de-Boc/cyclization strategy, Zhang and Tempest introduced a fluorous Boc group for amine protection and carried out the Ugi multicomponent condensation under microwave irradiation (Scheme 7.84). The desired fluorous condensation products were easily separated by fluorous solid-phase extraction (F-SPE) and deprotected by treatment with trifluoroacetic acid/tet-rahydrofuran under microwave irradiation. The resulting quinoxalinones were purified by a second F-SPE to furnish the products in excellent purity. This methodology was also applied in a benzimidazole synthesis, employing benzoic acid as a substrate. [Pg.353]

The synthesis of small arrays of organic compounds derived from multicomponent condensations was recently reported by Studer et al. (119). A 10-member amino acid amide library L7 (Fig. 8.21) was prepared using the fluorous Ugi ( Flugi ) condensation, and another 10-member dihydropyrimidine library L8 (Fig. 8.21) was prepared using the Biginelli ( Fluginelli ) condensation adapted to the fluorous phase. The key intermediates for library preparation were the silyl bromide 8.36, prepared from a fluorous iodide (120), and the acyl bromide 8.37 and the acid 8.38, prepared from an orthothiobenzoate (121), as shown in Fig 8.21. The structure of the fluorous tag was... [Pg.365]

Fluorous-phase soluble h < acryloxysuccinimide-containinj hence Wilkinson catalyst analog Miscellaneous reactions. solvents while employing a fl diaryl diselenide used to assist t A multicomponent coupling and rapid Stifle couplings are with microwave irradiation. [Pg.190]

Abstract Increasing reaction speed and simplifying product purification are two major ways to improve the efficiency of organic synthesis. A new technology for high-speed solution-phase synthesis has been developed by combination of microwave heating and fluorous purification. This review describes different techniques for microwave-enhanced fluorous synthesis and their applications in Pd-catalyzed cross-coupling reactions, free-radical reactions, multicomponent reactions, and compound library synthesis. [Pg.145]

Keywords Fluorous chemistry Microwave synthesis Solid-phase extraction High-throughput synthesis Multicomponent reaction... [Pg.145]

Zhang et al. (2006) have reported an advance fluorous synthesis of hydantoin-, piperazinedione-, and benzodiazepinedione-fused tricyclic and tetracyclic ring systems using a sequence of microwave-assisted, fluorous multicomponent reactions (F-MCRs) and fluorous solid-phase extractions (F-SPEs). They used microwave-assisted one pot, three-component [3+2] cycloaddition of azomethine ylides with... [Pg.140]


See other pages where Multicomponent fluorous-phase is mentioned: [Pg.353]    [Pg.430]    [Pg.58]    [Pg.181]    [Pg.354]    [Pg.87]    [Pg.181]    [Pg.101]    [Pg.504]    [Pg.181]    [Pg.443]   
See also in sourсe #XX -- [ Pg.353 ]




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