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Dinitrogen tetroxide nitration with

Hence dinitrogen tetroxide (sometimes mixed with an organic solvent) can be used to prepare anhydrous metal nitrates (many heavy metal nitrates are hydrated when prepared in aqueous solution, and they cannot be dehydrated without decomposition). [Pg.233]

Nitration has also been effected with the complexes from dinitrogen tetroxide and Lewis acidsin the case of boron trifluoride the complex appears to be a mixture of nitronium and nitrosonium tetrafluoroborates. ... [Pg.50]

The catalysed nitration of phenol gives chiefly 0- and />-nitrophenol, (< 0-1% of w-nitrophenol is formed), with small quantities of dinitrated compound and condensed products. The ortho para ratio is very dependent on the conditions of reaction and the concentration of nitrous acid. Thus, in aqueous solution containing sulphuric acid (i 75 mol 1 ) and nitric acid (0-5 mol 1 ), the proportion of oriha-substitution decreases from 73 % to 9 % as the concentration of nitrous acid is varied from o-i mol l i. However, when acetic acid is the solvent the proportion of ortAo-substitution changes from 44 % to 74 % on the introduction of dinitrogen tetroxide (4-5 mol 1 ). [Pg.57]

In solutions of acetyl nitrate in acetic anhydride, prepared from purified nitric acid, the 0 -ratio increases slightly with increasing concentrations of acetyl nitrate (table 5.7, expts. 11,13,16). The use of fuming nitric acid in the preparation of the acetyl nitrate considerably accelerates the rates of reaction and also increases the proportion of o-substitution (table 5.7, expts. 12, 15, 18). These effects resemble, but are much stronger than the corresponding effects in nitrations with solutions of nitric acid in acetic acid contaimng dinitrogen tetroxide. [Pg.97]

Since the first-order rate constant for nitration is proportional to y, the equilibrium concentration of nitronium ion, the above equations show the way in which the rate constant will vary with x, the stoichiometric concentration of dinitrogen tetroxide, in the two media. An adequate fit between theory and experiment was thus obtained. A significant feature of this analysis is that the weak anticatalysis in pure nitric acid, and the substantially stronger anticatalysis in partly aqueous nitric acid, do not require separate interpretations, as have been given for the similar observations concerning nitration in organic solvents. [Pg.221]

The dinitromethane derivatives 135 and 136 were obtained by nitration of oximes of monoacyl furazans and furoxans with dinitrogen tetroxide [36G819, 37G518, 63T(S)143] or nitric acid (37G388, 97MI11, 97ROC1760) (Scheme 79). [Pg.105]

A.F, Smetna T.C, Castorina, Radiation-Induced Nitration of Benzene With Dinitrogen Tetroxide , Explosivst No 4 (1973)... [Pg.316]

The same goes for almost all oxidants and especially molten ammonium nitrate, sodium dichromate (temperatures reach 1100 C), ammonium dichromate in concentrated solution, sodium peroxide (at 240 C, if there is friction) and dinitrogen tetroxide. In all these cases iron combusts in contact with these oxidants. [Pg.203]

Recently, nitration of organolithiums and Grignards with N204 has been developed for the preparation of certain kinds of nitro compounds (Eqs. 2.14 and 2.15).31 The success of this process depends on the reaction conditions (low temperature) and the structure of substrates. For example, 3-nitrothiophene can be obtained in 70% overall yield from 3-bromothiophene this is far superior to the older method. 3-Nitroveratrole cannot be prepared usefully by classical electrophilic nitration of veratrole, but it can now be prepared by direct o>7/ o-lithiation followed by low-temperature N204 nitration. The mechanism is believed to proceed by dinitrogen tetroxide oxidation of the anion to a radical, followed by the radical s combination. [Pg.7]

In reality, nitration of naphthalene with dinitrogen tetroxide in an aprotic medium is a complex process. The leading role belongs to nitrosyl cation. This species is a strong oxidant acting according to the outer-sphere mechanism (compare with Section 1.7.10) ... [Pg.259]

Nitronate salts and the tautomeric act-form of nitroalkanes, known as nitronic acids, are converted to gem-dinitro compounds on treatment with dinitrogen tetroxide. Novikov and co-workers synthesized phenyldinitromethane by treating phenylnitromethane with dinitrogen tetroxide in ether and later reported the synthesis of some substituted phenyltrinitromethanes from the direct nitration of the nitronate salts of phenylnitromethanes. [Pg.21]

Phenyltrinitromethanes are similarly obtained from the nitration of gem-nitronitronate salts with a solution of dinitrogen tetroxide in ether. 1,1,1-Trinitroethane (73) can be formed in this way from the potassium salt of 1,1-dinitroethane (24). Nitrolic acids, the products formed... [Pg.21]

Barton and Narang" have prepared nitrate esters by treating primary and secondary alky-lamines with dinitrogen tetroxide in the presence of an amidine base like DBU. Wudl and Lee " conducted deamination reactions without any amidine base and reported much lower yields of nitrate ester product. The use of an amidine base is not necessary if the amine substrate... [Pg.106]

Dinitrogen tetroxide forms a stable complex with boron trifluoride but this is a weak nitrating agent. Aromatic nitrations with other Lewis acids have been reported, including AICI3, FeCls, TiCU, BCI3, PF3, BF3, AsFs and SbFs. i " ... [Pg.142]

Aromatic substrates containing Lewis basic substituents can undergo ort/io-lithiation. Quenching these anions with dinitrogen tetroxide at low temperature is an example of nucleophilic aromatic nitration." Similar examples have been reported with anions generated from Grignard reactions with arylhalides." ... [Pg.142]


See other pages where Dinitrogen tetroxide nitration with is mentioned: [Pg.512]    [Pg.727]    [Pg.434]    [Pg.727]    [Pg.278]    [Pg.59]    [Pg.199]    [Pg.208]    [Pg.240]    [Pg.241]    [Pg.389]    [Pg.89]    [Pg.178]    [Pg.4]    [Pg.5]    [Pg.15]    [Pg.17]    [Pg.23]    [Pg.30]    [Pg.73]    [Pg.93]    [Pg.94]    [Pg.99]    [Pg.105]    [Pg.106]    [Pg.106]    [Pg.205]    [Pg.211]    [Pg.250]    [Pg.302]    [Pg.353]   
See also in sourсe #XX -- [ Pg.6 , Pg.107 , Pg.110 ]

See also in sourсe #XX -- [ Pg.107 , Pg.110 ]

See also in sourсe #XX -- [ Pg.6 , Pg.107 , Pg.110 ]

See also in sourсe #XX -- [ Pg.107 , Pg.110 ]




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