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P-nitrophenols

The preparation can be shortened by omitting this stage and extracting the black residue by boiling it first with the water already present in the flask. In this case the yield of p-nitrophenol is increased somewhat, but the product is usually verv dark in colour. [Pg.172]

Phenol may be nitrated with dilute nitric acid to 3deld a mixture of o- and nitrophenols the 3deld of p-nitrophenol is increased if a mixture of sodium nitiute and dilute sulphuric acid is employed. Upon steam distilling the mixture, the ortho isomer passes over in a substantially pure form the para isomer remains in the distillation flask, and can be readily isolated by extraction with hot 2 per cent, hydrochloric acid. The preparation of m-nitrophenol from wt-nitroaniline by means of the diazo reaction is described in Section IV,70. [Pg.665]

Allow the residue in the flask to cool during 2 hours and then cool in ice for 15-30 minutes. Filter oflF the crude p nitrophenol and boil it... [Pg.677]

The melting points of some 0-aryl saccharin derivatives are phenol, 182° o-cresol, 163° m-cresol, 146° p-cresol, 172° o-nitrophenol, 236° p-nitrophenol, 192°. [Pg.684]

The operation of the nitronium ion in these media was later proved conclusively. "- The rates of nitration of 2-phenylethanesulphonate anion ([Aromatic] < c. 0-5 mol l i), toluene-(U-sulphonate anion, p-nitrophenol, A(-methyl-2,4-dinitroaniline and A(-methyl-iV,2,4-trinitro-aniline in aqueous solutions of nitric acid depend on the first power of the concentration of the aromatic. The dependence on acidity of the rate of 0-exchange between nitric acid and water was measured, " and formal first-order rate constants for oxygen exchange were defined by dividing the rates of exchange by the concentration of water. Comparison of these constants with the corresponding results for the reactions of the aromatic compounds yielded the scale of relative reactivities sho-wn in table 2.1. [Pg.10]

Chloroanisole and p-nitrophenol, the nitrations of which are susceptible to positive catalysis by nitrous acid, but from which the products are not prone to the oxidation which leads to autocatalysis, were the subjects of a more detailed investigation. With high concentrations of nitric acid and low concentrations of nitrous acid in acetic acid, jp-chloroanisole underwent nitration according to a zeroth-order rate law. The rate was repressed by the addition of a small concentration of nitrous acid according to the usual law rate = AQ(n-a[HN02]atoioh) -The nitration of p-nitrophenol under comparable conditions did not accord to a simple kinetic law, but nitrous acid was shown to anticatalyse the reaction. [Pg.58]

The Pd(0)-catalyzed rearrangement of the iV-allylenamine 800 in CF3CO2H affords the (5, -unsaturated imine 801, which is hydrolyzed to give the 7, 8-unsaturated aldehyde 802[498]. The vinyloxaspirohexane 803 undergoes rearrangement-ring expansion to give the cyclopentanone 804 in the presence of 1 equiv. of p-nitrophenol[499]. [Pg.400]

A meta nitro group is not directly conjugated to the phenoxide oxygen and thus stabi hzes a phenoxide ion to a smaller extent m Nitrophenol is more acidic than phenol but less acidic than either o or p nitrophenol... [Pg.999]

The p nitrophenol formed as a byproduct in this reaction is easily removed by extrac tion with dilute aqueous base Unlike free ammo acids and peptides protected peptides are not zwitteriomc and are more soluble m organic solvents than m water... [Pg.1141]

An O acylisourea is formed by addition of the Z protected amino acid to N N dicyclo hexylcarbodiimide as shown in Figure 27 13 This O acylisourea is attacked by p nitrophenol... [Pg.1255]

The titration of a mixture ofp-nitrophenol (pfQ = 7.0) and m-nitrophenol pK = 8.3) can be followed spectrophotometrically. Neither acid absorbs at a wavelength of 545 nm, but their respective conjugate bases do absorb at this wavelength. The m-nitrophenolate ion has a greater absorbance than an equimolar solution of the p-nitrophenolate ion. Sketch the spectrophotometric titration curve for a 50.00-mL mixture consisting of 0.0500 M p-nitrophenol and 0.0500 M m-nitrophenol with 0.100 M NaOH, and compare the curve with the expected potentiometric titration curves. [Pg.361]

Deming and Pardue studied the kinetics for the hydrolysis of p-nitrophenyl phosphate by the enzyme alkaline phosphatase. The progress of the reaction was monitored by measuring the absorbance due to p-nitrophenol, which is one of the products of the reaction. A plot of the rate of the reaction (with units of pmol mL s ) versus the volume, V, (in milliliters) of a serum calibration standard containing the enzyme yielded a straight line with the following equation... [Pg.661]

The procedure of simultaneous extracting-spectrophotometric determination of nitrophenols in wastewater is proposed on the example of the analysis of mixtures of mono-, di-, and trinitrophenols. The procedure consists of extraction concentrating in an acid medium, and sequential back-extractions under various pH. Such procedures give possibility for isolation o-, m-, p-nitrophenols, a-, P-, y-dinitrophenols and trinitrophenol in separate groups. Simultaneous determination is carried out by summary light-absorption of nitrophenol-ions. The error of determination concentrations on maximum contaminant level in natural waters doesn t exceed 10%. The peculiarities of application of the sequential extractions under fixed pH were studied on the example of mixture of simplest phenols (phenol, o-, m-, />-cresols). The procedure of their determination is based on the extraction to carbon tetrachloride, subsequent back-extraction and spectrophotometric measurement of interaction products with diazo-p-nitroaniline. [Pg.126]


See other pages where P-nitrophenols is mentioned: [Pg.170]    [Pg.172]    [Pg.173]    [Pg.318]    [Pg.385]    [Pg.398]    [Pg.145]    [Pg.677]    [Pg.678]    [Pg.685]    [Pg.997]    [Pg.1113]    [Pg.11]    [Pg.90]    [Pg.998]    [Pg.1020]    [Pg.1021]    [Pg.1141]    [Pg.1141]    [Pg.1153]    [Pg.1195]    [Pg.292]    [Pg.483]    [Pg.943]    [Pg.981]    [Pg.1194]    [Pg.682]    [Pg.682]    [Pg.682]    [Pg.392]    [Pg.330]    [Pg.419]    [Pg.117]   
See also in sourсe #XX -- [ Pg.177 , Pg.298 ]




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Adsorption of p-nitrophenol

Bromination of p-nitrophenol

Cyclomaltohexaose - p-nitrophenol

Nitrophenolates

Nitrophenols

O- and p-Nitrophenols

P-Nitrophenol

P-Nitrophenol

P-Nitrophenol acidity

P-Nitrophenol adsorption

P-Nitrophenol concentrations

P-Nitrophenol esters of, in peptide bond formation

P-Nitrophenol in urine

P-Nitrophenol, formation

P-Nitrophenol-acetate

P-Nitrophenolate anion, as a leaving grou

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