Big Chemical Encyclopedia

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

Articles Figures Tables About

Reaction epoxidation

Friedel-Crafts. 2-Phenylpropanol results from the catalytic (AlCl, FeCl, or TiCl reaction of ben2ene and propylene oxide at low temperature and under anhydrous conditions (see Friedel-CRAFTS reactions). Epoxide reaction with toluene gives a mixture of 0-, m- and -isomers (75,76). [Pg.135]

The great reactivity of the sulfurane prepared by this procedure toward active hydrogen compounds, coupled with an indefinite shelf life in the absence of moisture, makes this compound a useful reagent for dehydrations,amide cleavage reactions, epoxide formation, sulfilimine syntheses, and certain oxidations and coupling reactions. [Pg.26]

Boger et al. prepared Duocarmycin SA via asymmetric epoxidation of a cyclic olefin 54." The stereochemistry set by the epoxidation step was used for subsequent C-C bond forming reactions. Epoxidation of olefin 54 was carried at -78°C to provide... [Pg.41]

Starting from cydohexa- 1,4-diene the order of the reactions epoxidation and bromination can be reversed if appropriate substituents are located at one of the two C-C double bonds, giving products 9 and IQ.34,155... [Pg.18]

For the formation of substituted THF rings (Route a, Scheme 8.1), Kishi developed a procedure based on the hydroxy-directed epoxidation of a y-alkenol [10]. Epoxidation of bishomoallylic alcohol 3 by TBHP/VO(acac)2 by this approach, followed by treatment of the intermediate epoxide 4 with acetic acid, gave the TH F derivative 5 of isolasalocid A (a 5-exo cydization Scheme 8.2) [11]. Further epoxidation of 5 (a y-alkenol) under the same conditions, followed by acetylation, afforded epoxide 6. For the synthesis of the natural product, the configuration of epoxide 6 had to be inverted before the second cydization reaction. Epoxide 6 was consequently hydrolyzed under acid conditions to the corresponding diol and was then selectively... [Pg.272]

Another microwave-mediated intramolecular SN2 reaction forms one of the key steps in a recent catalytic asymmetric synthesis of the cinchona alkaloid quinine by Jacobsen and coworkers [209]. The strategy to construct the crucial quinudidine core of the natural product relies on an intramolecular SN2 reaction/epoxide ringopening (Scheme 6.103). After removal of the benzyl carbamate (Cbz) protecting group with diethylaluminum chloride/thioanisole, microwave heating of the acetonitrile solution at 200 °C for 2 min provided a 68% isolated yield of the natural product as the final transformation in a 16-step total synthesis. [Pg.178]

In the application of the above discovery, ( )-3-benzyloxy-2-methyl pro-pionaldehyde 52 is used as the starting material in the synthesis of rifamycin A. As outlined in Scheme 7-12, compound 52 is converted to allyic alcohol 55 via a series of chemical reactions. Epoxidation of 55 proceeded stereoselectively, giving a single epoxide that affords 57 after subsequent treatment. Compound 57 may be converted to 58 upon acetonide formation. [Pg.405]

We emphasize that the above results have been observed only in the oxidation of sulfides and phenols, reactions known to follow radical mechanisms. A thorough investigation of the catalytic potential of the materials in other oxidation reactions (epoxidation, hydroxylations, etc.) is warranted. [Pg.120]

Usually, the formation of a new chiral centre involves the conversion of a prochiral sp carbon atom into one with sp hybridisation, the methods most generally used being the aldol and related condensations, pericyclic reactions (especially the Diels-Alder reaction), epoxidation, cyclopropanation and additions to double bonds (hydrogenation and hydroboration). Another possibility is the conversion of a prochiral sp carbon atom into a chiral centre, as for instance in the a-substitution (alkylation, halogenation, etc.) of a ketone. [Pg.214]

Keywords Acetals, Acylals, Allylations, Bismuth(III), 3,4-Dihydro-2//-l -benzopyrans, Ene reactions, Epoxide-olefin cyclizations, Piperidines, Tetrahydro-quinolines, THP ethers... [Pg.45]

Which of the following processes is least likely to be a phase I reaction epoxide formation,... [Pg.184]

Several efficient methods for the preparation of amino sugars have been developed57 and the following general methods can be identified nucleophilic displacement reactions, epoxide opening, additions to glycals, reduction of oximes and intramolecular substitutions. [Pg.76]

Ring-Opening Reactions. Epoxide opening takes place at the C-3 position of (1) with a wide variety of nucleophiles, as summarized below. [Pg.349]

Aggarwal VK, Winn CL. Catalytic, asymmetric sulfur ylide-mediated epoxidation of carbonyl compounds scope, selectivity, and applications in synthesis. Acc. Chem. Res. 2004 37 611-620. Li A-H, Dai L-X, Aggarwal VK. Asymmetric ylide reactions epoxidation, cyclopropanation, aziridination, olefination, and rearrangement. Chem. Rev. 1997 97 2341-2372. [Pg.2137]

Unsaturated acids undergo many oxidative reactions. Epoxidation of unsaturated acids is carried out with the same oxidants as those used with... [Pg.224]

Cycloaddition, Diels-Alder reactions, epoxidation of aromatic aldehydes, isomerization of aryl-substituted epoxides, and aziridination catalyzed by the iron Lewis acid [(j 5-C5H5)Fe(CO)2(THF)] 03ACA3. [Pg.158]


See other pages where Reaction epoxidation is mentioned: [Pg.23]    [Pg.317]    [Pg.350]    [Pg.231]    [Pg.234]    [Pg.1018]    [Pg.1018]    [Pg.145]    [Pg.391]    [Pg.391]    [Pg.56]    [Pg.201]    [Pg.1578]    [Pg.246]    [Pg.2]    [Pg.22]    [Pg.391]    [Pg.737]    [Pg.565]    [Pg.681]    [Pg.686]    [Pg.155]    [Pg.692]    [Pg.199]    [Pg.197]   
See also in sourсe #XX -- [ Pg.387 , Pg.389 ]

See also in sourсe #XX -- [ Pg.73 ]

See also in sourсe #XX -- [ Pg.19 ]




SEARCH



1.3- Diols via reaction of epoxides with boron-stabilized

Acetylide anions reactions with epoxides

Acid catalysis, general epoxide reactions

Addition Reactions Involving Epoxides

Addition reactions epoxidation

Alane, diethyl reaction with epoxides

Alkenes, epoxidation secondary reactions

Alkenyl epoxides, substitution reactions

Alkoxides reaction with epoxides

Alkyl azides reactions with epoxides

Alkyne anions reaction with epoxides

Amine hydrofluorides reactions with epoxides

Amines reaction with epoxides

Ammonium hydroxide, reaction with epoxides

Aniline, reaction with epoxides

Anionic epoxide polymerization reaction scheme

Anionic epoxide polymerization side reactions

Aryl borates epoxide reactions

Asymmetric epoxidation 3 + 2] cycloaddition reactions

Asymmetric epoxidation Atom transfer reactions

Asymmetric epoxidation competing side reactions

Asymmetric epoxidation electrophilic reactions

Asymmetric epoxidation nucleophilic reactions

Asymmetric epoxidation radical addition reactions

Asymmetric reactions epoxidation

Azide reaction with epoxides

Base-catalyzed reactions epoxidation

Base-catalyzed reactions, with epoxides

Benzo acridine epoxide ring opening reactions

Biochemical Reactions of Epoxides

Biochemical reactions, epoxides

Biological epoxidation reactions

Boranes reaction with epoxides

Boron-stabilized reactions with epoxides

Boryl compounds, dimesitylproperties reactions with epoxides

Camphorsulfonic acid, reaction with epoxides

Carbanions reactions with epoxides

Carboxylic acids dianions, reaction with epoxides

Carboxylic acids reactions with epoxides

Carotenoid-5,6-epoxides reaction mechanism

Catalytic reactions epoxide rearrangement

Ceric ammonium nitrate, reaction with epoxides

Chemoenzymatic epoxidation reactions

Chemoselective reactions epoxidation

Cobalt hydrocarbonyl, reactions epoxides

Concerted reactions epoxidation

Condensation reactions epoxides

Coupling Reactions of CO2 and Epoxides

Cross-coupling reactions epoxide

Cross-coupling reactions reaction with epoxides

Cuprate, reaction with epoxides

Current Epoxidation Reactions

Cyanide, reaction with epoxides

Cycloaddition reactions epoxide generation

Cycloalkylidene epoxides, a-methylenemacrocyclic reaction with organocopper compounds

Cyclohexane, methyleneene reactions epoxidation

Cyclopentadienone epoxides via retro Diels-Alder reactions

Cytochromes P450 epoxidation reactions

Diborane reaction with epoxides

Diethylamine, reaction with epoxides

Dihydroxylation reaction Jacobsen epoxidation

Diol epoxides reaction mechanism

Dithiane anions reaction with epoxides

Ei-ichi Negishi and Show-Yee Liou 5 Palladium-Catalyzed Substitution Reactions of Alkenyl Epoxides

Electrophilic aromatic substitution reactions epoxide substrate

Elimination reactions conjugated epoxides

Enantioselective reactions epoxidation of allylic alcohols

Enolates reaction with epoxides

Epoxidation Reaction - Involvement of Adsorbed Oxygen Species

Epoxidation Weitz-Scheffer reaction

Epoxidation and Aziridination Reactions

Epoxidation and Related Reactions

Epoxidation other reactions

Epoxidation reaction mechanism

Epoxidation reactions and catalysts

Epoxidation reactions geraniol

Epoxidation reactions involved

Epoxidation reactions, with

Epoxidation side reactions

Epoxide Sn2 reactions

Epoxide base-catalyzed reactions

Epoxide biotransformation reactions

Epoxide copolymerization reaction

Epoxide cyclization domino reaction

Epoxide formation in the reaction

Epoxide hydrolase reaction mechanism

Epoxide hydrolases reaction mechanisms

Epoxide hydroxyl reactions

Epoxide phenol reaction

Epoxide phenol reaction catalysis

Epoxide phenol reaction kinetics

Epoxide polymerization reaction mechanism

Epoxide polymerization reaction routes

Epoxide reaction

Epoxide reaction

Epoxide reaction with

Epoxide reaction with Grignard reagents

Epoxide reaction with LiAlH

Epoxide reaction with acids

Epoxide reaction with amines

Epoxide reaction with base

Epoxide reactions limiting mechanism

Epoxide reactions protonation

Epoxide reactions with wood

Epoxide reactions, rearrangement protocols

Epoxide resins cross-linking reactions

Epoxide ring opening reactions

Epoxide ring opening reactions carbocations

Epoxide ring opening reactions dibenzo acridine

Epoxide ring opening reactions dibenzo acridine-1,2epoxide

Epoxide ring opening reactions epoxides from

Epoxide ring opening reactions fluorinated derivatives

Epoxide ring opening reactions for

Epoxide ring opening reactions for methylated DB ACR-l,2epoxide

Epoxide ring opening reactions hydrocarbons

Epoxide ring opening reactions methylated derivatives

Epoxide synthesis addition reactions

Epoxide-alcohol reaction

Epoxide-alkyne reaction

Epoxide-anhydride reaction

Epoxide-anhydride-proton donor reaction

Epoxides Bamford-Stevens reaction

Epoxides Cyclic three-membered ring ethers reactions

Epoxides Grignard reactions

Epoxides Prilezhaev reaction

Epoxides Ritter reaction

Epoxides addition reactions

Epoxides catalytic reactions

Epoxides formation reactions

Epoxides intramolecular reaction

Epoxides nucleophilic reactions

Epoxides nucleophilic substitution reactions

Epoxides reaction conditions

Epoxides reaction number

Epoxides reaction with Grignard reagents

Epoxides reaction with alcohols

Epoxides reaction with allyl silanes

Epoxides reaction with ammonia

Epoxides reaction with base

Epoxides reaction with cyanate

Epoxides reaction with hydrazine

Epoxides reaction with imidazole

Epoxides reaction with lithium aluminium hydrid

Epoxides reaction with nucleophiles

Epoxides reaction with organocuprates

Epoxides reaction with phosphines

Epoxides reaction with sulfide ions

Epoxides reaction with thiols

Epoxides reaction with triazole

Epoxides reaction with trimethylaluminium

Epoxides reaction with, phosgene

Epoxides reactions

Epoxides reactions

Epoxides reactions with benzyne

Epoxides reactions with carboxylic

Epoxides reactions with dialkoxyboryl carbanions

Epoxides reactions with lithiodithiane

Epoxides reactions with nitriles

Epoxides rearrangement reactions

Epoxides reduction reactions

Epoxides ring opening reactions with nucleophile

Epoxides ring opening reactions with nucleophiles

Epoxides ring-expansion reaction

Epoxides ring-opening reactions have been

Epoxides vinylic, reaction with Grignard reagents

Epoxides, Mukaiyama aldol reaction

Epoxides, reaction with Lewis acids

Epoxides, reaction with acid diamines

Epoxides, reaction with acid dianions

Epoxides, reaction with aluminum borohydride

Epoxides, reaction with amide enolates

Epoxides, reaction with ethanol

Epoxides, reaction with higher order cuprates

Epoxides, reaction with isocyanates

Epoxides, reaction with perchloric acid

Epoxides, reaction with phenyl lithium

Epoxides, reaction with phthalimide

Epoxides, reaction with reside

Epoxides, reaction with sulfuric acid

Epoxides, reactions with indoles

Epoxides, ring opening reactions sugar synthesis

Epoxides, vinyl reaction with allylic alcohols

Epoxides, vinyl reaction with nitrogen nucleophiles

Ether linkages, epoxide reactions

Examples of Engineered Enzymes for Biocatalytic Epoxidation Reactions

Fluoride reaction with epoxides

Fluorine substitution effect epoxide ring opening reaction

Friedel-Crafts reaction epoxides

General Features—Reactions of Alcohols, Ethers, and Epoxides

Gilman reagents reaction with epoxides

Grignard reaction with epoxides

Grignard reagents reaction with allylic epoxides

Halide ions, reaction with epoxides

Humulene 8,9-epoxide transannular reactions

Hydrazine reaction with epoxide

Hydride reaction with epoxides

Hydroformylation reactions epoxides

Hydrogen halides, reaction with epoxide

Hydrogen peroxide, reaction + epoxide

Hydroxide, sodium reaction with epoxides

In epoxide reactions with

Intramolecular reaction epoxide alkylation

Intramolecular reactions epoxide cleavage

Julia-Colonna reaction/epoxidation

Ketene acetals reaction with epoxides

Leaving groups epoxidation reactions

LiAlH4, reaction with epoxides

Limonene epoxidation reactions

Lithium acetylide reaction with epoxides

Lithium diisopropylamide reaction with epoxides

Lithium dimethylcuprate reactions with epoxides

Lithium isohexylcyanocuprate reaction with epoxides

Lithium triethylborohydride reaction with epoxides

Mesoporous titanium silicates epoxidation reactions

Metal-catalyzed reactions epoxidation

Nickel complexes, epoxidation reactions

Novel Heterogenized Catalysts for Asymmetric Ring-Opening Reactions of Epoxides

Nuclear magnetic resonance epoxidation reaction

Nucleophiles fluorinated, epoxide reaction

Nucleophilic Ring-Opening Reactions of Epoxides

Nucleophilic Substitution Reactions of Epoxides

Nucleophilic aliphatic epoxide reactions

Of epoxidation reactions

Organoaluminum compounds reaction with epoxides

Organoaluminum reagents reactions with epoxides

Organocopper compounds reaction with epoxides

Organolithium reagents reaction with epoxides

Organometallic compounds reactions with epoxides

Organometallic reagents reactions with epoxides

Oxazolidone epoxide-isocyanate reaction

Oxidation reactions asymmetric epoxidation

Oxidation reactions epoxidation

Oxidation reactions, transition-metal asymmetric epoxidation

Perbenzoic acid, m-chloroBaeyer-Villiger reaction epoxidations

Photochemical reactions epoxidation

Phthalimides, reaction with epoxides

Poly epoxide-isocyanate reaction

Polyethers epoxide-opening reactions

Polymer-supported reactions epoxide ring-openings

Polymerisation reactions epoxide ring-opening

Prileschajew epoxidation reaction

Primary alkyl reactions with epoxides

Primary amine epoxide reaction

Propylene epoxidation kinetic reactions

Protein Engineering for Biocatalytic Epoxidation Reaction

Quinone epoxides via retro Diels-Alder reactions

Rates in Biomimetic Epoxidation Reactions

Reaction epoxide-opening

Reaction of Lithioacetonitrile with Epoxides

Reaction of a Grignard with an Epoxide

Reaction of epoxidations

Reaction of epoxides with hydrogen fluoride

Reaction rates peracid alkene epoxidation

Reaction with epoxides

Reaction with vinyl epoxides

Reaction-controlled phase-transfer catalysis for propylene epoxidation

Reactions catalytic asymmetric epoxidation

Reactions enantioselective epoxidation

Reactions from epoxides, thionocarbonates and episulfides

Reactions of Alcohols, Esters, Silyl Ethers, Epoxides, and Haloalkanes

Reactions of Alkyl Azides with Epoxides

Reactions of Epoxides and Aziridines

Reactions of Epoxides with Anionic Nucleophiles

Reactions of Epoxides with Grignard and Organolithium Reagents

Reactions of epoxides

Reactions with OH Groups and Epoxides

Reactions with epoxides alcohol synthesis

Reactions with epoxides alkylation

Reactions with epoxides ring opening

Reactions with epoxides secondary alkyl

Reactions with epoxides tertiary alkyl

Regiocontrol in Epoxide-Opening Reactions

Rhodium catalysis epoxide reactions

Ring Opening of Epoxides and Related Reactions Eric N. Jacobsen, Michael H. Wu

Ring opening reactions epoxides

Ring opening reactions of epoxides

Scaffold modification epoxidation reactions

Secondary amine — epoxide reaction

Sharpless asymmetric epoxidation reaction

Sharpless epoxidation reaction

Side Reactions During Epoxidation

Silanes reaction with epoxides

Sn2 reaction epoxide cleavage and

Sodium azide, reaction with epoxides

Sodium borohydride reaction with epoxides

Sodium ethoxide reaction with epoxides

Some Reactions of Epoxides

Stereochemistry of the Epoxidation Reaction

Stereoselective Epoxide Ring-Opening Reactions

Stereoselective reactions epoxidation

Stereospecific reactions epoxidation of alkenes

Stereospecific reactions epoxide formation from

Stereospecific reactions epoxide ring opening

Subject reactions with epoxides

Sugar epoxides, reaction with ammonia

Summary Reactions of Epoxides

The ethylene epoxidation reaction

Thiol reaction with epoxide

Titanium Tetraisopropoxide asymmetric epoxidation reactions

Titanium tartrate asymmetric epoxidation, reaction variables

Triethyl phosphite, reaction with epoxides

Triphenylphosphine reaction with epoxides

Vinyl epoxides substitution reactions

© 2024 chempedia.info