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  2. 4-Methylcyclohexene - Wikipedia

    en.wikipedia.org/wiki/4-Methylcyclohexene

    4-Methylcyclohexene is an organic compound consisting of cyclohexene with a methyl group substituent attached to carbon most distant from the alkene group. Two other structural isomers are known: 1-methylcyclohexene and 3-methylcyclohexene .

  3. Methylcyclohexene - Wikipedia

    en.wikipedia.org/wiki/Methylcyclohexene

    Methylcyclohexene can refer to any of three compounds: 1-Methylcyclohexene; 3-Methylcyclohexene; 4-Methylcyclohexene This page was last edited on 18 November ...

  4. Work-up - Wikipedia

    en.wikipedia.org/wiki/Work-up

    Synthesis of 4-methylcyclohexene with work-up step in red. A concentrated solution of sodium chloride in water, known as a brine solution, is added to the mixture and the layers are allowed to separate. The brine is used to remove any acid or water from the organic layer.

  5. Evelyn effect - Wikipedia

    en.wikipedia.org/wiki/Evelyn_effect

    It then appears that the reaction proceeds mainly by a trans mechanism and, following the Zaitsev rule, 1-methylcyclohexene is preferentially formed in the early stages of the reaction. Indeed, if only about 10% of the total distillate is collected as the first fraction, one finds that the alkene is about 93% l-methylcyclohexene: at the end of ...

  6. Methylenecyclohexane - Wikipedia

    en.wikipedia.org/wiki/Methylenecyclohexane

    1 Synthesis. 2 Structure. 3 See also. ... It can also be synthesized as a side product of the dehydration of 2-methylcyclohexanol into 1-methylcyclohexene. Structure

  7. Cyclohexene - Wikipedia

    en.wikipedia.org/wiki/Cyclohexene

    Cyclohexene is a hydrocarbon with the formula (CH 2) 4 C 2 H 2. It is an example of a cycloalkene. At room temperature, cyclohexene is a colorless liquid with a sharp odor. Among its uses, it is an intermediate in the commercial synthesis of nylon. [3]

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  9. Hydration reaction - Wikipedia

    en.wikipedia.org/wiki/Hydration_reaction

    Hydration reaction mechanism from 1-methylcyclohexene to 1-methylcyclohexanol. Many alternative routes are available for producing alcohols, including the hydroboration–oxidation reaction , the oxymercuration–reduction reaction , the Mukaiyama hydration , the reduction of ketones and aldehydes and as a biological method fermentation .