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Catalysis Claisen rearrangement

Catalysis by lithium perchlorate in dichloromethane Diels-Alder reactions and 1,3-Claisen rearrangements [100]... [Pg.295]

Lewis acid catalysis of Ireland-Claisen rearrangements by TiCl4 has been observed.251 This methodology was employed in the synthesis of a novel type of anti-inflammatory drug candidate.252... [Pg.572]

The differences in the rate constant for the water reaction and the catalyzed reactions reside in the mole fraction of substrate present as near attack conformers (NACs).171 These results and knowledge of the importance of transition-state stabilization in other cases support a proposal that enzymes utilize both NAC and transition-state stabilization in the mix required for the most efficient catalysis. Using a combined QM/MM Monte Carlo/free-energy perturbation (MC/FEP) method, 82%, 57%, and 1% of chorismate conformers were found to be NAC structures (NACs) in water, methanol, and the gas phase, respectively.172 The fact that the reaction occurred faster in water than in methanol was attributed to greater stabilization of the TS in water by specific interactions with first-shell solvent molecules. The Claisen rearrangements of chorismate in water and at the active site of E. coli chorismate mutase have been compared.173 It follows that the efficiency of formation of NAC (7.8 kcal/mol) at the active site provides approximately 90% of the kinetic advantage of the enzymatic reaction as compared with the water reaction. [Pg.415]

Denmark and Harmata studied the reaction of 1,2-allenyl sulfones and 2-prope-nols under the catalysis of 5 mol% of sodium alkoxide affording 2-alloxy-2-propenyl sulfone 217, which can be converted to 2-oxo-5-alkenyl sulfone 218 by treatment with 1.5equiv. of KH in HMPA, a carbanion-accelerated Claisen rearrangement [116, 117]. [Pg.634]

Monoalkylation of a-isocyano esters by using tert-butyl isocyano acetate (R = fBu) has been reported by Schollkopf [28, 33]. Besides successful examples using primary halides, 2-iodopropane has been reported to produce the a-alkylated product (1) as well by this method (KOfBu in THF). In the years 1987-1991, Ito reported several methods for the monoalkylation of isocyano esters, including the Michael reaction under TBAF catalysis as described earlier [31], Claisen rearrangements [34], and asymmetric Pd-catalyzed allylation [35]. Finally, Zhu recently reported the first example of the introduction of an aromatic substituent by means of a nucleophilic aromatic substitution (Cs0H-H20, MeCN, 0°C) in the synthesis of methyl ot-isocyano p-nitrophenylacetate [36]. [Pg.133]

Catalysis of Claisen rearrangements has been achieved using highly hindered bis(phenoxy)methylaluminum as a Lewis acid.156 Reagents of this type also have the ability to control the E Z ratio of the products. Very bulky catalysts tend to favor the Z-isomer by forcing the a substituent of the allyl group into an axial conformation. [Pg.384]

BINAP, 127, 171, 191, 194, 196 olefin reaction, 126, 167, 169, 191 organic halides, 191 Pancreatic lipase inhibitors, 357 Pantoyl lactone, 56, 59 para-hydrogen, 53 Peptides, matrix structure, 350 Perhydrotriphenylene, crystal lattice, 347 Pericyclic reactions, 212 chiral metal complexes, 212 Claisen rearrangement, 222 Diels-Alder, 212, 291 ene reaction, 222, 291 olefin dihydroxylation, 150 Phase-transfer reactions asymmetric catalysis, 333... [Pg.196]


See other pages where Catalysis Claisen rearrangement is mentioned: [Pg.93]    [Pg.495]    [Pg.1492]    [Pg.381]    [Pg.562]    [Pg.390]    [Pg.830]    [Pg.1032]    [Pg.174]    [Pg.163]    [Pg.144]    [Pg.1131]    [Pg.607]    [Pg.210]    [Pg.93]    [Pg.485]   
See also in sourсe #XX -- [ Pg.512 , Pg.513 , Pg.517 ]

See also in sourсe #XX -- [ Pg.512 , Pg.513 , Pg.517 ]

See also in sourсe #XX -- [ Pg.98 , Pg.512 , Pg.513 , Pg.517 ]




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Catalysis (cont Claisen rearrangement

Catalysis rearrangement

Lewis acid catalysis Claisen rearrangement

Palladium catalysis Claisen rearrangement

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