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In recent times the catalytic oxidation of cyclohexene by (immobilized) metalloporphyrin complexes has been found to be an efficient way. [7] [8] In laboratory, cyclohexene oxide can also be prepared by reacting cyclohexene with magnesium monoperoxyphthalate (MMPP) in a mixture of isopropanol and water as solvent at room temperature. [9]
Hydration of cyclohexene gives cyclohexanol, which can be dehydrogenated to give cyclohexanone, a precursor to caprolactam. [8] The oxidative cleavage of cyclohexene gives adipic acid. Hydrogen peroxide is used as the oxidant in the presence of a tungsten catalyst. [9] 1,5-Hexadiene is produced by ethenolysis of cyclohexene. Bromination gives 1 ...
cyclohexene oxide: 286-20-4 C 6 H 10 O: hexenal: 1335-39-3 C 6 H 10 O: meparfynol: 77-75-8 C 6 H 10 OS: allyl thiopropionate: 41820-22-8 C 6 H 10 OS 2: allicin: 539-86-6 C 6 H 10 O 2: cyclobutanecarboxylic acid methyl ester: 765-85-5 C 6 H 10 O 2: cyclobutyl ethanoate: 500033-42-1 C 6 H 10 O 2: cyclopentane carboxylic acid: 3400-45-1 C 6 H 10 O ...
1-Methylcyclohexene an organic compound consisting of cyclohexene with a methyl group substituent attached to the alkene group. Two other structural isomers are known: 3-methylcyclohexene and 4-methylcyclohexene. All are colorless volatile liquids. They are specialized reagents.
A heterocyclic compound or ring structure is a cyclic compound that has atoms of at least two different elements as members of its ring(s). [1] Heterocyclic organic chemistry is the branch of organic chemistry dealing with the synthesis, properties, and applications of organic heterocycles .
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For cyclohexane, cyclohexene, and cyclohexadiene, dehydrogenation is the conceptually simplest pathway for aromatization. The activation barrier decreases with the degree of unsaturation. Thus, cyclohexadienes are especially prone to aromatization. Formally, dehydrogenation is a redox process. Dehydrogenative aromatization is the reverse of ...
1,2,3-Cyclohexatriene is an unstable chemical compound with the molecular formula C 6 H 6. [1] It is an unusual isomer of benzene in which the three double bonds are cumulated. ...