2.1) Draw the structure of "major organic final product" of the following Addition of H₂O to alkyne reaction. The chemical structure must have the correct number of carbon atoms and functional group(s) H3C-C CH 1. (Sia)₂BH.THF 2.-OH, H₂O₂ Problem viewing the image. Click Here 2.2) Draw the structure of the "enol intermediate". 2.3) Draw the step-by-step curved arrow pushing mechanism of Tautomerization from "the enol intermediate to the major organic final product" under Base-Catalyzed condition. Your answer must include all related resonance contributors, and all lone pair electrons must be included in your drawing.

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2.1) Draw the structure of "major organic final product" of the following Addition of H₂O to
alkyne reaction. The chemical structure must have the correct number of carbon atoms and
functional group(s)
H3C-C=CH
1. (Sia)₂BH.THF
2. OH, H₂O2
Problem viewing the image. Click Here
2.2) Draw the structure of the "enol intermediate".
2.3) Draw the step-by-step curved arrow pushing mechanism of Tautomerization from "the enol
intermediate to the major organic final product" under Base-Catalyzed condition. Your answer
must include all related resonance contributors, and all lone pair electrons must be included in
your drawing.
Transcribed Image Text:2.1) Draw the structure of "major organic final product" of the following Addition of H₂O to alkyne reaction. The chemical structure must have the correct number of carbon atoms and functional group(s) H3C-C=CH 1. (Sia)₂BH.THF 2. OH, H₂O2 Problem viewing the image. Click Here 2.2) Draw the structure of the "enol intermediate". 2.3) Draw the step-by-step curved arrow pushing mechanism of Tautomerization from "the enol intermediate to the major organic final product" under Base-Catalyzed condition. Your answer must include all related resonance contributors, and all lone pair electrons must be included in your drawing.
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