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Acid Reagents

SSA is a better proton source than polymer-supported sulfonic acids such as polystyrene sulfonic acid and Nafion-H. Many reactions using SSA have been reported, such as multicomponent reactions [68-76], carbon-oxygen [77-86], carbon-nitrogen [87-93] and carbon-sulfur [94, 95] bond formation or cleavage. [Pg.108]

Similar catalysts, silica-gel bound aliphatic and aromatic sulfonic acids, have also been developed and used for several reactions. For instance, propanesulfonic [Pg.108]

Stability of Sensitivity Stable Sensitivity Stable Sensitivity Stable Stable Stable [Pg.109]

Reusable Three times Nine times Twice Five times [Pg.109]

HC104/Si02 has been used for many acid-catalyzed reactions, such as protection of carbonyl compounds [104—108], selective deprotections [109, 110], Ferrier rear- [Pg.110]


The acylation of ketones with acid anhydrides may be effected by means of the acid reagent boron trifluoride, for example ... [Pg.861]

The periodic acid reagent is prepared by dissolving 1 - 0 g. of paraperiodic acid HglOg in 200 ml. of distilled water. [Pg.1070]

Place 2 ml. of the periodic acid reagent in a small test tube, add one drop (no more—otherwise the silver iodate, if formed, will fail to precipitate) of concentrated nitric acid, and shake well. Add one drop or a small crystal of the compound to be tested, shake the mixture for 15-20 seconds, and then add 1-2 drops of 3 per cent, silver nitrate solution. The instantaneous formation of a white precipitate of silver iodate is a positive test. Failure to form a precipitate, or the appearance of a brown precipitate which redissolves on shaking, constitutes a negative test. [Pg.1070]

The tert butyl group is cleaved as the corresponding carbocation Loss of a proton from tert butyl cation converts it to 2 methylpropene Because of the ease with which a tert butyl group is cleaved as a carbocation other acidic reagents such as trifluoroacetic acid may also be used... [Pg.1138]

Cuprous chloride, ammoniacal this solution is used for the same purpose and is made in the same manner as the acid cuprous chloride above, except that the acid solution is treated with ammonia until a faint odor of ammonia is perceptible. Copper wire should be kept with the solution as in the acid reagent. [Pg.1190]

Hydrogen peroxide—hydrochloric acid reagent converts 2-aminoben2otrifluoride to 2-amino-5-chloroben2otrifluoride [121 -50-6], a dye intermediate (Cl A2oic Dia2o Component 17), without contamination by the 3-chloro isomer such as is observed with molecular chlorine (CI2) (302). [Pg.329]

A/-Chloro fatty acid amides have been synthesized from the direct halogenation of the amide in boiling water (28). They are useful as reactive intermediates for further synthesis. Fluorination has also been reported by treating the fatty amide with fluorine-containing acid reagents at 200 °C to reach a fluorinated amide with less reactivity toward fluorocarbon polymers (29). [Pg.184]

Electrophile Addition Reactions. The addition of electrophilic (acidic) reagents HZ to propylene involves two steps. The first is the slow transfer of the hydrogen ion (proton) from one base to another, ie, from Z to the propylene double bond, to form a carbocation. The second is a rapid combination of the carbocation with the base, Z . The electrophile is not necessarily limited to a Lowry-Briiinsted acid, which has a proton to transfer, but can be any electron-deficient molecule (Lewis acid). [Pg.124]

Cyanide compounds are classified as either simple or complex. It is usually necessary to decompose complex cyanides by an acid reflux. The cyanide is then distilled into sodium hydroxide to remove compounds that would interfere in analysis. Extreme care should be taken during the distillation as toxic hydrogen cyanide is generated. The cyanide in the alkaline distillate can then be measured potentiometricaHy with an ion-selective electrode. Alternatively, the cyanide can be determined colorimetricaHy. It is converted to cyanogen chloride by reaction with chloramine-T at pH <8. The CNCl then reacts with a pyridine barbituric acid reagent to form a red-blue dye. [Pg.232]

Electrophile Addition. The addition of electrophilic (acidic) reagents HZ involves two steps the slow transfer of hydrogen ion from Z to the butylene to form a carbocation and, a rapid combination of the carbocation with the base Z. [Pg.363]

The rate of addition depends on the concentration of both the butylene and the reagent HZ. The addition requires an acidic reagent and the orientation of the addition is regioselective (Markovnikov). The relative reactivities of the isomers are related to the relative stabiUty of the intermediate carbocation and are isobutylene 1 — butene > 2 — butenes. Addition to the 1-butene is less hindered than to the 2-butenes. For hydrogen bromide addition, the preferred orientation of the addition can be altered from Markovnikov to anti-Markovnikov by the presence of peroxides involving a free-radical mechanism. [Pg.363]

Inorganic ar senic normally occurs in two oxidation states As(V) and As(III). Arsenic (V) gives a significantly lower response than ar senic (III). For pre-reduction As(V) to the As(III) concentrated hydrochloric acid and potassium iodide/ascorbic acid reagents were used. As organoarsenic compounds do not react with sodium tetrahydi oborate, they were decomposed with a mixture of HNO and on a hot plate. [Pg.208]

NKOH, EtOH, 20°, 5-10 min 80% yield. 5-2,2-Bis(carboethoxy)ethyl thioether, stable to acidic reagents such as trifluoroacetic acid and hydrogen bromide/acetic acid, has been used in a synthesis of glutathione. ... [Pg.296]

The Na salt is prepared by dissolving the in H2O containing 2 mols of NaOH per mol of acid reagent and lyophilising. It complexes with Ca and Mg ions. [Pg.407]

Aryl isothiocyanates can be prepared by the action of thio-phosgene on the arylamine (this reaction fails with naphthyl compounds), by fission of a 5ym-diaryIthiourea with acidic reagents (this reaction involves the loss of half the amine used), and by the decomposition of an ammonium aryldithiocar-bamate (low yields are reported for naphthyl and other compounds).The procedure described here is that of Baxter, Cymerman-Craig, Moyle, and White. ... [Pg.57]

Tribromobenzoic acid has been prepared by the deamination of 2,4,6-tribromo-3-aminobenzoic acid (reagents not specified), by hydrolysis of 2,4,6-tribromobenzonitrile, " and by oxidation of the tribromotoluene, the benzyl chloride, the aldehyde,and the glyoxylic acid.i The present method is a modification of that of Bunnett, Robison, and Pennington.i ... [Pg.97]

The dehydration of alcohols is an important elimination reaction that takes place under acidic rather flian basic conditions. It involves an El mechanism." The function of the acidic reagent is to convert the hydroxyl group to a better leaving group by protonation ... [Pg.392]

Aniline — Diphenylamine — Phosphoric Acid Reagent Reaction (according to [16])... [Pg.180]

Diphenylamine—Phosphoric Acid Reagent), these condense with aniline to Schiff s... [Pg.188]


See other pages where Acid Reagents is mentioned: [Pg.240]    [Pg.227]    [Pg.254]    [Pg.258]    [Pg.124]    [Pg.525]    [Pg.75]    [Pg.369]    [Pg.923]    [Pg.155]    [Pg.156]    [Pg.157]    [Pg.158]    [Pg.159]    [Pg.160]    [Pg.161]    [Pg.162]    [Pg.163]    [Pg.164]    [Pg.165]    [Pg.179]    [Pg.181]    [Pg.182]    [Pg.184]    [Pg.185]    [Pg.186]    [Pg.187]    [Pg.188]    [Pg.189]    [Pg.190]    [Pg.195]   
See also in sourсe #XX -- [ Pg.5 ]




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1,2-Naphthoquinone-4-sulfonic acid reagent

2,2 -Pyridilic acid with primary alkyl Grignard reagents

4-Aminohippuric acid reagent

A-Amino acids modifying reagents

A-Hydroxy acids modifying reagents

Acetals, acid catalyzed from Grignard reagents

Acid Hydrazide Reagent

Acid anhydrides reagents

Acid chloride, alcohols from reaction with Grignard reagents

Acid chlorides as acylation reagents

Acid chlorides reagents

Acid chlorides with indole Grignard reagents

Acid chlorides with organometallic reagents

Acid derivatives reaction with Grignard reagents

Acid derivatives, acylation reagents

Acidic Activation With Additional Reagents

Acidic conditions Grignard reagents

Acidic reagents

Acidic reagents

Acidic reagents, Table

Acids Organoaluminum reagents

Alcohols carboxylic acid reagents

Alcohols, oxidizing reagents acids

Amino acid Folins reagent

Amino acid modifying reagent

Amino acids chemical modification reagents

Amino acids derivatizing reagents

Amino acids separation fluorescent reagents, derivatization

Aniline — Diphenylamine — Phosphoric Acid Reagent

Aniline — Phosphoric Acid Reagent

Arsenomolybdic acid reagent

Ascorbic acid (vitamin reagents

Atrolactic acid preparation of chiral reagent

Azaallyl metal reagents carboxylic acids

Base and Acid Reagents

Benzenesulfonic acid reagent

Benzoic acid as reagent

Boronic acid esters reagents

Boronic acid-salicylhydroxamate reagent pairs

Buffer reagents, amino acid separation

Carbonyl compounds acid derivatives reactions with organometallic reagents

Carboxylic acid chlorides organocadmium reagents

Carboxylic acid chlorides organocuprate reagents

Carboxylic acid derivatives organometallic reagents

Carboxylic acid derivatives reactions with organometallic reagents

Carboxylic acid derivatives reagents

Carboxylic acid from Grignard reagents

Carboxylic acid reagents with carbon

Carboxylic acids Grignard reagents

Carboxylic acids acylation reagents from

Carboxylic acids and Grignard reagents

Carboxylic acids by reaction of Grignard reagent with

Carboxylic acids ester reaction with Grignard reagents

Carboxylic acids reaction with organolithium reagents

Carboxylic acids reactions with organoaluminum reagents

Carboxylic acids reagents

Carboxylic acids reagents for

Carboxylic acids resolving reagents

Carboxylic acids with alkyl Grignard reagents

Carboxylic acids, a,P-epoxysynthesis via sulfur ylide reagents

Chiral Lewis Acids as Catalytic Reagents

Chiral Lewis Acids as Stoichiometric Reagents

Chiral reagents amino acids

Chiral reagents, amino acid synthesis with

Chromic acid reagent

Chromium reagents acidic

Chromium reagents aqueous acetic acid

Chromium reagents reaction with acids

Chromium reagents sulfuric acid

Dichromate — Sulfuric Acid Reagent

Dienes carboxylic acid reagents

Diketones, acid catalyzed reagents

Dimerization reactions carboxylic acid reagents

Dimethylamino)-benzaldehyde —Acid Reagents

Diols, acid catalyzed reagents

Diphenylboric acid-2-aminoethyl ester reagent

Electrophilic reagents reactions of nucleic acids

Esters, carboxylic acid with Grignard reagents

Formic acid as reagent for carboxylation

Formic acid reaction with Grignard reagents

Fuchsin-sulfurous acid reagent

Gilman reagent reaction with acid chlorides

Grignard reagent in the preparation an acid

Grignard reagent reaction with carboxylic acids

Grignard reagent with acids

Grignard reagents acidic hydrogen atoms

Grignard reagents protect acidic groups

Grignard reagents react with boronic acid

Grignard reagents reaction with acid

Grignard reagents with acid derivatives

Grignard reagents with sulphurous acid derivatives

Grignard reagents, reaction with acid chlorides

Heptafluorobutyric acid reagent

Heterobifunctional reagents acid labile

Hexanoic acid, 2-ethylallyl trapping reagent

Hydrochloric acid reagent

Hydrochloric acid vapor reagent

Hydrochloride-nitric acid reagent

Hydroxamic acids analytical reagents

Hydroxy acid modifying reagent

Hydroxy acidic activation with additional reagents

Hydroxy acids Grignard reagents

II) Chloride — Sulfuric Acid Reagent

III) Chloride — Perchloric Acid Reagent

Iodinating reagents hydriodic acid

Isonicotinic acid hydrazide reagent

Jones reagent sulfuric acid

Lewis Acid Property of Alkali Metals in Organoalkali Metal Reagents

Lewis Acidic Functions of Alkali Metal in Organometallic Reagents as Nucleophile

Lewis acids chelating reagents

Lewis acids, lanthanide shift-reagents

Lithium, organo-, reagents carboxylic acids

Maleic acid anhydride reagent

Malonic acid as reagent esters

Methanesulfonic acid Beckmann rearrangement reagent

Molybdic acid reagent

Nitration with acidic reagents

Nitric acid reagent

Nitric acid reagent, hydroxylamine

Nucleic acid electrophilic reagents

Organoaluminum reagents reactions with acid derivatives

Organocadmium reagents Lewis acid promotion

Organolithium reagents Lewis acid promotion

Organolithium reagents from carboxylic acids

Organolithium reagents reaction with acid chlorides

Organolithium reagents use of Lewis acids

Organometallic reagents reactions with acid chlorides

Organometallic reagents reactions with carboxylic acid

Organozinc reagents Lewis acid promotion

Organozinc reagents acid chlorides

Oxalic acid as reagent

Oxalic acid reactions with Grignard reagents

Oximes, acid catalyzed reagent

P-Toluenesulfonic acid reagent

PALLADIUM-CATALYZED COUPLING OF ACID CHLORIDES WITH ORGANOTIN REAGENTS

Perchloric acid reagent

Periodic acid reagent

Periodic acid-Schiff reagent

Peroxytrifluoroacetic acid as reagent

Pertrifluoroacetic acid Reagent

Phenyl acid phosphate reagent

Phenylenediamine — Trichloroacetic Acid Reagent

Phosphomolybdic acid reagent

Phosphoric acid reagent

Phosphotungstic acid reagent

Phthalic acid reagent

Picric acid reagent

Polymer supported reagents acidic

Polymer-supported reagents carboxylic acid synthesis

Polymer-supported reagents sulfonic acid

Polymer-supported, acid reagents

Potassium persulfate, reagent for oxidation of o-iodobenzoic acid

Prelog-Djerassi lactonic acid use of chiral reagent

Reaction of Organocopper Reagent with Acid Chlorides

Reaction of Organometallic Reagents with Carboxylic Acid Derivatives

Reactions of Acid Derivatives with Organometallic Reagents

Reactions of Organozinc Reagents with Acid Chlorides

Reagent alkynoic acids

Reagent potassium dichromate-sulfuric acid

Reagent thymol-sulfuric acid

Reagent vanillin-phosphoric acid

Reagent vanillin-sulfuric acid

Reagents Lewis acid

Reagents Oxalic Acid Derivatives

Reagents amino acids

Reagents methanesulfonic acid

Related reagents acid chlorides

Silver as a Lewis Acid Reagent

Silver chlorate-osmic acid reagent

Stereoselective acid reagents

Sulfenyl reagents Lewis acides

Sulfuric acid, reagent

Sulfurous acid reagent

Tannic acid, reagent for

Tartaric acid esters of in enantioselective reagents

Tartaric acid modifying reagent

Transition metal halides complex Lewis acid reagent

Trichloroacetic acid reagent

Trinitrobenzenesulfonic acid reagent

V) — Sulfuric Acid Reagent

Zinc-copper reagents reactions with acid chlorides

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