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Ketones 859 ketonic ester

THF, ketones, esters, ethylene glycol Aromatic and chlorinated hydrocarbons, MeOH, ketones Ketones, esters... [Pg.147]

Claisen condensation Condensation of an ester with another ester, a ketone or a nitrile in the presence of sodium ethoxide, sodium or sodamidc, with the elimination of an alcohol. The result is the formation of a / -ketonic ester, ketone, or nitrile respectively, e.g. [Pg.101]

The preparation of 4-methylcoumarin is an example of the Pechmann reaction, which consists in the interaction of a phenol with a 3-ketonic ester In the presence of a condensing agent (sulphuric acid, aluminium chloride, phosphorus oxychloride or pho.sphoric oxide) ... [Pg.853]

The addition of active methylene compounds (ethyl malonate, ethyl aoeto-acetate, ethyl plienylacetate, nltromethane, acrylonitrile, etc.) to the aP-double bond of a conjugated unsaturated ketone, ester or nitrile In the presence of a basic catalyst (sodium ethoxide, piperidine, diethylamiiie, etc.) is known as the Michael reaction or Michael addition. The reaction may be illustrated by the addition of ethyl malonate to ethyl fumarate in the presence of sodium ethoxide hydrolysis and decarboxylation of the addendum (ethyl propane-1 1 2 3-tetracarboxylate) yields trlcarballylic acid ... [Pg.912]

Acid chlorides and bromides, allyl halides, a-halo-ketones, esters, amides and nitriles react at 25° within 3 minutes. Vinyl and aryl halides are inert. [Pg.1060]

If the unknown neutral, oxygen-containing compound does not give the class reactions for aldehydes, ketones, esters and anhydrides, it is probably... [Pg.1065]

Some electron deficient dienophiles are quinones, maleic ahydride, nitroalkenes, a,p-unsaturated ketones, esters and nitriles. [Pg.151]

Solution Properties. Typically, if a polymer is soluble ia a solvent, it is soluble ia all proportions. As solvent evaporates from the solution, no phase separation or precipitation occurs. The solution viscosity iacreases continually until a coherent film is formed. The film is held together by molecular entanglements and secondary bonding forces. The solubiUty of the acrylate polymers is affected by the nature of the side group. Polymers that contain short side chaias are relatively polar and are soluble ia polar solvents such as ketones, esters, or ether alcohols. As the side chaia iacreases ia length the polymers are less polar and dissolve ia relatively nonpolar solvents, such as aromatic or aUphatic hydrocarbons. [Pg.164]

Synthesis of OC- and P-Ghiral Ketones, Esters, and Nitriles. Chiral boronic esters are convenient precursors of a-chiral ketones (R COR ), which can be prepared via the dialkylborinic ester or dialkylthexyl route (524,525). [Pg.324]

The conversion of chiral boronic esters iato optically pure B-aIkyl-9-BBN derivatives followed by reaction with a-bromoketones, a-bromoesters, or a-bromonitriles leads to the homologated P-chiral ketones, esters, and nitriles, respectively (526). [Pg.324]

The corrosion behavior of tantalum is weU-documented (46). Technically, the excellent corrosion resistance of the metal reflects the chemical properties of the thermal oxide always present on the surface of the metal. This very adherent oxide layer makes tantalum one of the most corrosion-resistant metals to many chemicals at temperatures below 150°C. Tantalum is not attacked by most mineral acids, including aqua regia, perchloric acid, nitric acid, and concentrated sulfuric acid below 175°C. Tantalum is inert to most organic compounds organic acids, alcohols, ketones, esters, and phenols do not attack tantalum. [Pg.331]

Volatiles or Aroma. The essential oil, or aroma, of tea provides much of the pleasing flavor and scent of green and black tea beverages. Despite this, volatile components comprise only - 1% of the total mass of the tea leaves and tea infusions. Black tea aroma contains over 300 characterizing compounds, the most important of which are terpenes, terpene alcohols, lactones, ketones, esters, and spiro compounds (30). The mechanisms for the formation of these important tea compounds are not fully understood. The respective chemistries of the aroma constituents of tea have been reviewed... [Pg.368]

PMVEMA, supphed as a white, fluffy powder, is soluble in ketones, esters, pyridine, lactams, and aldehydes, and insoluble in aUphatic, aromatic, or halogenated hydrocarbons, as well as in ethyl ether and nitroparaffins. When the copolymer dissolves in water or alcohols, the anhydride group is cleaved, forming the polymers in free acid form or the half-esters of the corresponding alcohol, respectively. Table 7 illustrates the commercially available alternating copolymers and derivatives. [Pg.518]

Aldehydes and Ketones. Esters are obtained readily by condensation of aldehydes in the presence of alcoholate catalysts such as aluminum... [Pg.381]

Other carbon electrophiles which are frequently employed include aldehydes, ketones, esters, nitriles and amides of the type RCONMei. An indirect method of acylation involves the initial reaction of a lithio compound with an aldehyde followed by oxidation of the resulting secondary alcohol to the corresponding acyl derivative. [Pg.80]

Viton (FKM, FPM) Water Petroleum oils Many inorganic acids (Most all NBR fluids) Amines Ketones Esters Organic acids Liquid ammonia... [Pg.1084]

H-Bond Acceptor (HBA) Acyl chlorides Acyl fluorides Hetero nitrogen aromatics Hetero oj gen aromatics Tertiary amides Tertiary amines Other nitriles Other nitros Isocyanates Peroxides Aldehydes Anhydrides Cyclo ketones Ahphatic ketones Esters Ethers Aromatic esters Aromatic nitriles Aromatic ethers Sulfones Sulfolanes... [Pg.1318]

Regioselective coniugale reduction and reductive silylation of a,p-unsaturated ketones, esters, and aldehydes using a stable copper (I) hydride cluster (Ph3P)CuH 6... [Pg.375]

Polydiethylene glycol succinate 50-200° Aromatic hydrocarbons, alcohols, ketones, esters. [Pg.39]

The alkylation reactions of enolate anions of both ketones and esters have been extensively utilized in synthesis. Both very stable enolates, such as those derived from (i-ketoesters, / -diketones, and malonate esters, as well as less stable enolates of monofunctional ketones, esters, nitriles, etc., are reactive. Many aspects of the relationships between reactivity, stereochemistry, and mechanism have been clarified. A starting point for the discussion of these reactions is the structure of the enolates. Because of the delocalized nature of enolates, an electrophile can attack either at oxygen or at carbon. [Pg.435]

Solvents. NBRs are soluble in aromatic hydrocarbons, chlorinated hydrocarbons, ketones, esters and nitroparaffin compounds. Solvents with high evaporation rate are acetone, methyl ethyl ketone, chloroform and ethyl acetate, among others. Solvents with slow evaporation rate are nitromethane, dichloropentenes, chloro-toluene, butyl acetate and methyl isobutyl ketone. [Pg.658]

Solvents. Solvents affect adhesive viscosity, bond strength development, open time, cost, and ultimate strength. Blends of three solvents (aromatic, aliphatic, oxygenates, e.g. ketones, esters) are generally added, and in their selection environmental and safety regulations must be considered. A graphical method has been proposed to predict the most adequate solvent blends for solvent-borne CR... [Pg.664]

Other components in PVAc-formulations are defoamers, stabilizers, filler dispersants, preservatives, thickeners (hydroxyethylcellulose, carboxymethylcellu-lose), polyvinyl alcohols, starch, wetting agents, tackifiers, solvents (alcoholes, ketone, esters), flame retardants and others. [Pg.1078]

Both the dipolymers and terpolymers have excellent resistance to hydrocarbons found m petroleum-based fuels and lubricants The 69 5% F terpolymer resists swellmg m blended fuels that contain metlianol and can be used in contact with certain phosphate ester-based hydraulic fluids Terpolymers are preferred for contact with aromatic solvents, although either type performs well in higher alcohols VDF-based elastomers dissolve m polar aprotic solvents such as ketones, esters, amides, and certam ethers These elastomers are therefore not suitable for contact with fluids that contain substantial amounts of these solvents because of excessive swell and consequent loss of mechanical properties... [Pg.1113]

AkoJwIs may be obtained from aldehydes, ketones, esters, acid chlorides, and anhydrides,... [Pg.307]

In addition to the above, Grignaid s leagent has been utilised m preparing olefines, etheis, ketonic esters, hydroxy-acids, quinols, amides, hydroxylammes, c., for details of wliicti books of reference must be consulted ... [Pg.308]


See other pages where Ketones 859 ketonic ester is mentioned: [Pg.142]    [Pg.17]    [Pg.20]    [Pg.904]    [Pg.368]    [Pg.22]    [Pg.69]    [Pg.213]    [Pg.214]    [Pg.262]    [Pg.528]    [Pg.278]    [Pg.62]    [Pg.251]    [Pg.2467]    [Pg.55]    [Pg.346]    [Pg.449]    [Pg.459]    [Pg.460]    [Pg.462]    [Pg.2]    [Pg.243]    [Pg.394]    [Pg.113]    [Pg.904]   
See also in sourсe #XX -- [ Pg.130 ]

See also in sourсe #XX -- [ Pg.130 ]

See also in sourсe #XX -- [ Pg.130 ]




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Acetoacetic ester ketone synthesis

Acetoacetic ester synthesis methyl ketones

Acetoacetic ester synthesis of ketones

Acetoacetic ester synthesis of methyl ketone

Acetoacetic ester synthesis substituted methyl ketones

Acetoacetic ester, alkylation ketones from

Acetoxy-ketones => vinyl esters

Acetylenic Ketones and Esters

Acylation of Ketones with Esters

Acylation, ketones with esters

Aldehyde esters, from hydroxy-ketones

Aldehyde, Ketone, and Ester Enolates

Aldehydes, Ketones, Acids, and Esters

Aldehydes, ketones, esters, and anhydrides

Alkylation, acetoacetic ester ketone

Amide-esters => ketones

Amino esters from ketones

Aryl ketones and esters

Arylacetic acid esters aryl methyl ketones

Arylboronic esters ketones

Carbonyl compounds Ester Ketones

Carbonyl group Esters Ketones

Carbonyl group acids Esters Ketones

Carbonyl group anhydrides Carboxylic acids Esters Ketones

Carboxylic esters with ketones

Carboxylic esters, from acyl ketones

Claisen condensation acylation, ketones with esters

Claisen condensation between ketones and esters

Claisen condensation ketone enolate reaction with esters

Condensation of a ketone and an ester

Conjugate ketones and esters

Cyano-esters, reaction with ketones

Cyclic ketones from keto esters

Enol esters, from alkynes with ketones

Enolates ketone enolate reaction with esters

Epoxy esters from unsaturated ketones

Ester, amide From ketone

Ester-acids => ketones

Esters => hydroxy -ketones

Esters aldehydes or ketones

Esters base-catalyzed condensation with ketones

Esters beta-ketonic

Esters chloro, reaction with ketones

Esters from chloro ketones

Esters from cyclic ketones

Esters from diazo ketones

Esters from ketones

Esters from methyl ketones

Esters from unsaturated ketones

Esters reaction with ketone enolate anions

Esters with ketones

Esters, conjugated => ketones

Fructose with 0-ketonic esters

Glycidic acid esters ketones

Glycidic esters from ketones

Hydrolysis of ketonio esters, acid ketonic

Hydroxy esters from ketones

Ketocarboxylic acid esters ketones

Ketocarboxylic acid esters ketones, cyclic

Ketone esters

Ketone esters

Ketone from acetoacetic ester

Ketone into an ester

Ketone, ammonium => esters

Ketone-ester coupling

Ketone-splitting of acetoacetic ester

Ketone/ester exchange

Ketones 0-Labeled ester

Ketones 9-Ketophosphonate esters

Ketones Claisen condensation with esters

Ketones Darzens glycidic ester condensation

Ketones acylmalonic acid ester

Ketones and Esters

Ketones and Esters as Nucleophiles for Rhodium-Catalyzed Allylic Alkylation

Ketones by acetoacetic ester synthesis

Ketones by esters

Ketones carboxylic acid esters

Ketones cross condensation with esters

Ketones from 8-keto esters

Ketones from acetoacetate ester

Ketones from acetoacetic ester synthesis

Ketones indirectly, from carboxylic esters

Ketones nitric acid esters

Ketones reaction with enol esters

Ketones reaction with ester enolates

Ketones reaction with esters

Ketones with ester enolates

Ketones, Aldehydes, Amides, Carboxylic Acids, and Esters All Contain a Carbonyl Croup

Ketones, Esters and Related Compounds

Ketones, Esters, Lactones and Lactams

Ketones, catalytic condensation with esters

Ketones, preparation from carboxylic acid ester

Ketones, reaction with phosphonate ester ylids

Oxidation of Ketones to Esters (Baeyer-Villiger Reaction)

Oxidation of ketones to esters or lactones

Peroxy esters ketones

Preparation of Carboxylic Acids, Esters and Ketones

Pyrazine ketones from pyrazinecarboxylic esters

Pyridine Aldehydes, Ketones, Carboxylic Acids and Esters

Pyrrole-2-carboxylic acid esters, from ketone

Pyrrole-2-carboxylic acid esters, from pyrrol-2-yl trichloromethyl ketone

Reaction of Methanol with Nitriles, Ketones, and Esters

Sulfonic acid esters ketones, synthesis

The reduction of aldehydes, ketones and esters

Trichloromethyl ketones carboxylic acid ester

Unsaturated carboxylic esters with ketones

Unsaturated ketones and esters

Vinyl esters ketones

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