The hydroboration–oxidation of internal alkynes produces ketones.
b. When hydroboration–oxidation is applied to pent-2-yne, two products are obtained. Show why a mixture of products should be expected with any unsymmetrical internal alkyne.
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The hydroboration–oxidation of internal alkynes produces ketones.
b. When hydroboration–oxidation is applied to pent-2-yne, two products are obtained. Show why a mixture of products should be expected with any unsymmetrical internal alkyne.
Show how hex-1-yne might be converted to
e. 2-bromohexane.
The hydroboration–oxidation of internal alkynes produces ketones.
a. When hydroboration–oxidation is applied to but-2-yne, a single pure product is obtained. Determine the structure of this product, and show the intermediates in its formation.
Show how hex-1-yne might be converted to
a. 1,2-dichlorohex-1-ene.
b. 1-bromohex-1-ene.
c. 2-bromohex-1-ene.
When pent-2-yne reacts with mercuric sulfate in dilute sulfuric acid, the product is a mixture of two ketones. Give the structures of these products, and use mechanisms to show how they are formed.
Propose a mechanism for the reaction of pent-1-yne with HBr in the presence of peroxides. Show why anti-Markovnikov orientation results.