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And reduction of aldehydes

Solutions of low-valence titanium chloride (titanium dichloride) are prepared in situ by reduction of solutions of titanium trichloride in tetrahydrofuran or 1,2-dimethoxyethane with lithium aluminum hydride [204, 205], with lithium or potassium [206], with magnesium [207, 208] or with a zinc-copper couple [209,210]. Such solutions effect hydrogenolysis of halogens [208], deoxygenation of epoxides [204] and reduction of aldehydes and ketones to alkenes [205,... [Pg.30]

This zinc metalloenzyme [EC 1.1.1.1 and EC 1.1.1.2] catalyzes the reversible oxidation of a broad spectrum of alcohol substrates and reduction of aldehyde substrates, usually with NAD+ as a coenzyme. The yeast and horse liver enzymes are probably the most extensively characterized oxidoreductases with respect to the reaction mechanism. Only one of two zinc ions is catalytically important, and the general mechanistic properties of the yeast and liver enzymes are similar, but not identical. Alcohol dehydrogenase can be regarded as a model enzyme system for the exploration of hydrogen kinetic isotope effects. [Pg.43]

The kinetic of protonolysis of (9-BBN)2 with representative alcohols and phenols are followed [1] in THF and CCl at 25 °C. The protonolysis of (9-BBN)2 hi CCI4 with tert-butyl alcohol exhibits first-order kinetics, first order in (9-BBN)2, and is in good agreement with those obtained in alkenes [1], alkynes [1], and reduction of aldehydes and ketones [2]. [Pg.52]

Other drug changes that take place in the liver cytosol (not the e.r,) include mercapturic acid formation from a few aromatic hydrocarbons, the oxidation of cyclohexanes to benzenes, of alcohols to aldehydes, and both oxidation and reduction of aldehydes. Esters and anides are rapidly hydrolysed in the bloodstream and many other tissues. An important... [Pg.83]

NH2-C0-NH NH2,CH5N30. Colourless crystalline substance m.p. 96" C. Prepared by the electrolytic reduction of nitrourea in 20% sulphuric acid at 10 "C. Forms crystalline salts with acids. Reacts with aldehydes and ketones to give semicarbazones. Used for the isolation and identification of aldehydes and ketones. [Pg.355]

Reduction of aldehydes with iron and glacial acetic acid, for example ... [Pg.247]

Clemmensen reduction of aldehydes and ketones. Upon reducing aldehydes or ketones with amalgamated zinc and concentrated hydrochloric acid, the main products are the hydrocarbons (>C=0 —> >CHj), but variable quantities of the secondary alcohols (in the case of ketones) and unsaturated substances are also formed. Examples are ... [Pg.510]

Wolff - Kishner reduction of aldehydes and ketones. Upon heating the hydrazoiie or semicarbazone of an aldehyde or ketone with potassium hydroxide or with sodium ethoxide solution (sealed tube), the corresponding hydrocarbon is obtained ... [Pg.510]

Reduction of Aldehydes, Ketones, and Carboxylic Acid Derivatives... [Pg.105]

We will begin with the reduction of aldehydes and ketones... [Pg.625]

For most laboratory scale reductions of aldehydes and ketones catalytic hydro genation has been replaced by methods based on metal hydride reducing agents The two most common reagents are sodium borohydride and lithium aluminum hydride... [Pg.628]

The mechanism of lithium aluminum hydride reduction of aldehydes and ketones IS analogous to that of sodium borohydride except that the reduction and hydrolysis... [Pg.629]

Sodium cyanoborohydride is remarkably chemoselective. Reduction of aldehydes and ketones are, unlike those with NaBH pH-dependent, and practical reduction rates are achieved at pH 3 to 4. At pH 5—7, imines (>C=N—) are reduced more rapidly than carbonyls. This reactivity permits reductive amination of aldehydes and ketones under very mild conditions (42). [Pg.304]

Addition of sodium dithionite to formaldehyde yields the sodium salt of hydroxymethanesulfinic acid [79-25-4] H0CH2S02Na, which retains the useful reducing character of the sodium dithionite although somewhat attenuated in reactivity. The most important organic chemistry of sodium dithionite involves its use in reducing dyes, eg, anthraquinone vat dyes, sulfur dyes, and indigo, to their soluble leuco forms (see Dyes, anthraquinone). Dithionite can reduce various chromophores that are not reduced by sulfite. Dithionite can be used for the reduction of aldehydes and ketones to alcohols (348). Quantitative studies have been made of the reduction potential of dithionite as a function of pH and the concentration of other salts (349,350). [Pg.150]

The aromatic primary and secondary stibines are readily oxidized by air, but they are considerably more stable than their aHphatic counterparts. Diphenylstibine is a powerful reducing agent, reacting with many acids to Hberate hydrogen (79). It has also been used for the selective reduction of aldehydes and ketones to the corresponding alcohols (80). At low temperatures, diphenylstibine undergoes an addition reaction with ketene (81) ... [Pg.206]

Reduction of Aldehydes and Ketones to Hydrocarbons. Deep hydrogenation of aldehydes and ketones removes the oxygen functionahty and produces the parent hydrocarbons. [Pg.200]

Table 8.3. Rates of Reduction of Aldehydes and Ketones by Sodium Borohydride... Table 8.3. Rates of Reduction of Aldehydes and Ketones by Sodium Borohydride...
Section 15.2 Alcohols can be prepared from car bonyl compounds by reduction of aldehydes and ketones. See Table 15.3. [Pg.653]


See other pages where And reduction of aldehydes is mentioned: [Pg.262]    [Pg.92]    [Pg.340]    [Pg.810]    [Pg.262]    [Pg.92]    [Pg.340]    [Pg.810]    [Pg.561]    [Pg.872]    [Pg.627]    [Pg.627]    [Pg.629]    [Pg.631]    [Pg.240]    [Pg.259]    [Pg.174]    [Pg.92]    [Pg.627]    [Pg.627]    [Pg.629]    [Pg.631]    [Pg.62]   


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Aldehydes reduction

Aldehydes reductive

Asymmetric reduction of aldehydes and ketones

From reduction of aldehydes and ketones

Hydride reduction of aldehydes and ketones

Mechanism borohydride reduction of aldehydes and

Organosilane Reductive Amination of Aldehydes and Ketones

REDUCTION REACTIONS OF ALDEHYDES AND KETONES

Reaction XII.—Reduction of Aldehydes and Ketones to Pinacones

Reduction of Aldehyde and Ketone Carbonyls

Reduction of Aldehydes and Ketones Using Whole Cells

Reduction of Aldehydes and Ketones to Alcohols

Reduction of Aldehydes and Ketones to Hydrocarbons

Reduction of Aldehydes and Ketones with Poly(Methylhydrosiloxane)

Reduction of Aldehydes, Ketones, and Carboxylic Acid Derivatives

Reduction of aldehydes

Reduction of aldehydes and ketones

Reduction of unsaturated aldehydes and ketones

Reductions of a, 3-unsaturated aldehydes and ketone

Reductive Coupling of Alkynes and Aldehydes

Reductive alkylation of aldehydes and ketones

Reductive amination, of aldehydes and

Reductive of ketones and aldehydes

The reduction of aldehydes and ketones

The reduction of aldehydes, ketones and esters

Wolff-Kishner reduction, of aldehydes and

Wolff-Kishner reduction, of aldehydes and ketones

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