it,s C7H8+9O2>7CO2+4H2O+HEAT
apexx
The reaction between acidified potassium permanganate and toluene results in the oxidation of toluene to benzoic acid. The balanced chemical equation for this reaction is: C7H8 + 2KMnO4 + 8H2SO4 → 2MnSO4 + K2SO4 + 7H2O + 7H2O + C6H5CO2H
Electrophilic halogenation
No, toluene cannot be directly converted to aniline by the Gabriel synthesis. The Gabriel synthesis involves the reaction of an alkyl halide with potassium phthalimide to form an alkyl phthalimide intermediate, which is then converted to the primary amine through a nucleophilic substitution reaction. Toluene does not contain a suitable leaving group for this type of reaction.
When bromine is added to toluene, bromination of the aromatic ring can occur. This reaction can lead to the formation of mono- or poly-brominated toluene derivatives, depending on reaction conditions. Products may include ortho-, meta-, or para-bromotoluene isomers.
When excess chlorine is passed through boiling toluene, chlorination of the toluene molecule can occur. This reaction can lead to the introduction of chlorine atoms into the benzene ring of toluene, resulting in the formation of chlorinated derivatives of toluene. These derivatives can have different properties and reactivity compared to the original toluene molecule.
The reaction between acidified potassium permanganate and toluene results in the oxidation of toluene to benzoic acid. The balanced chemical equation for this reaction is: C7H8 + 2KMnO4 + 8H2SO4 → 2MnSO4 + K2SO4 + 7H2O + 7H2O + C6H5CO2H
The reaction between bromine and toluene can result in the substitution of a hydrogen atom on the toluene ring with a bromine atom, forming bromotoluene. Different isomers of bromotoluene can be produced depending on the position of the bromine atom on the toluene ring.
para-toluene sulfonic acid and ortho toluene sulfonic acid p-CH3-C6H4-SO3H and o-CH3-C6H4-SO3H
Electrophilic halogenation
No, toluene cannot be directly converted to aniline by the Gabriel synthesis. The Gabriel synthesis involves the reaction of an alkyl halide with potassium phthalimide to form an alkyl phthalimide intermediate, which is then converted to the primary amine through a nucleophilic substitution reaction. Toluene does not contain a suitable leaving group for this type of reaction.
there is no chemical reaction between these two.
When bromine is added to toluene, bromination of the aromatic ring can occur. This reaction can lead to the formation of mono- or poly-brominated toluene derivatives, depending on reaction conditions. Products may include ortho-, meta-, or para-bromotoluene isomers.
When excess chlorine is passed through boiling toluene, chlorination of the toluene molecule can occur. This reaction can lead to the introduction of chlorine atoms into the benzene ring of toluene, resulting in the formation of chlorinated derivatives of toluene. These derivatives can have different properties and reactivity compared to the original toluene molecule.
When toluene reacts with chlorine in the presence of sunlight, a substitution reaction occurs where one or more hydrogen atoms in the toluene molecule are replaced by chlorine atoms. This reaction can result in the formation of different chlorinated derivatives of toluene, such as benzyl chloride or benzal chloride, depending on the conditions and the position of the substitution on the benzene ring.
lol huh
Iodination of toluene in the presence of an oxidizing agent, such as iodine monochloride (ICl), helps promote the oxidation of iodide ions to atomic iodine, which is a more reactive species that can then participate in the substitution reaction with toluene. This process allows for the efficient iodination of toluene by enhancing the reactivity of the iodine species.
Burning of any material is an oxidation reaction, a chemical change.