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  2. 3-Penten-2-one - Wikipedia

    en.wikipedia.org/wiki/3-Penten-2-one

    3-Penten-2-one occurs naturally in the berries of two species of Aronia melanocarpa. [7] It has also been found in other plants and foods such as tomatoes, cocoa, tea, and potato chips. [5] 3-Penten-2-one can be used for the synthesis of other compounds such as the alkaloids senepodine G and cermizine C, for example. [7]

  3. 3-Pentanol - Wikipedia

    en.wikipedia.org/wiki/3-Pentanol

    1.2 – 9% Except where otherwise noted, data are given for materials in their standard state (at 25 °C [77 °F], 100 kPa). N verify ( what is Y N ?)

  4. 3-Methyl-3-pentanol - Wikipedia

    en.wikipedia.org/wiki/3-Methyl-3-pentanol

    3-Methyl-3-pentanol (IUPAC name: 3-methylpentan-3-ol) is an organic chemical compound and a tertiary hexanol. It is used in the synthesis of the tranquilizer emylcamate , [ 2 ] and has similar sedative and anticonvulsant actions itself.

  5. Pentyl group - Wikipedia

    en.wikipedia.org/wiki/Pentyl_group

    Pentyl is a five-carbon alkyl group or substituent with chemical formula-C 5 H 11.It is the substituent form of the alkane pentane.. In older literature, the common non-systematic name amyl was often used for the pentyl group.

  6. File:Structural formula of (E)-3-Penten-2-one.svg - Wikipedia

    en.wikipedia.org/wiki/File:Structural_formula_of...

    What links here; Upload file; Special pages; Printable version; Page information; Get shortened URL; Download QR code

  7. Allylic rearrangement - Wikipedia

    en.wikipedia.org/wiki/Allylic_rearrangement

    Allylic shifts become the dominant reaction pathway when there is substantial resistance to a normal (non-allylic) substitution. For nucleophilic substitution, such resistance is known when there is substantial steric hindrance at or around the leaving group, or if there is a geminal substituent destabilizing an accumulation of positive charge.

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  9. Pentene - Wikipedia

    en.wikipedia.org/wiki/Pentene

    Pentenes are alkenes with the chemical formula C 5 H 10.Each molecule contains one double bond within its molecular structure. Six different compounds are in this class, differing from each other by whether the carbon atoms are attached linearly or in a branched structure and whether the double bond has a cis or trans form.