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  2. Enantioselective reduction of ketones - Wikipedia

    en.wikipedia.org/wiki/Enantioselective_reduction...

    Enantioselective ketone reductions convert prochiral ketones into chiral, non-racemic alcohols and are used heavily for the synthesis of stereodefined alcohols. [ 1 ] Carbonyl reduction, the net addition of H 2 across a carbon-oxygen double bond, is an important way to prepare alcohols.

  3. Carbonyl reduction - Wikipedia

    en.wikipedia.org/wiki/Carbonyl_reduction

    Aldehydes and ketones can be reduced respectively to primary and secondary alcohols. In deoxygenation, the alcohol group can be further reduced and removed altogether by replacement with H. Two broad strategies exist for carbonyl reduction. One method, which is favored in industry, uses hydrogen as the reductant.

  4. Corey–Itsuno reduction - Wikipedia

    en.wikipedia.org/wiki/Corey–Itsuno_reduction

    The Corey–Itsuno reduction, also known as the Corey–Bakshi–Shibata (CBS) reduction, is a chemical reaction in which a prochiral ketone is enantioselectively reduced to produce the corresponding chiral, non-racemic alcohol.

  5. Corey–Kim oxidation - Wikipedia

    en.wikipedia.org/wiki/Corey–Kim_oxidation

    Dimethyl sulfide (Me 2 S) is treated with N-chlorosuccinimide (NCS), resulting in formation of an "active DMSO" species that is used for the activation of the alcohol. Addition of triethylamine to the activated alcohol leads to its oxidation to aldehyde or ketone and generation of dimethyl sulfide. In variance with other alcohol oxidation using ...

  6. Oppenauer oxidation - Wikipedia

    en.wikipedia.org/wiki/Oppenauer_oxidation

    Oppenauer oxidation, named after Rupert Viktor Oppenauer , [1] is a gentle method for selectively oxidizing secondary alcohols to ketones. Oppenauer oxidation reaction scheme. The reaction is the opposite Meerwein–Ponndorf–Verley reduction. [2] The alcohol is oxidized with aluminium isopropoxide in excess acetone.

  7. Narasaka–Prasad reduction - Wikipedia

    en.wikipedia.org/wiki/Narasaka–Prasad_reduction

    The Narasaka–Prasad reduction, sometimes simply called Narasaka reduction, is a diastereoselective reduction of β-hydroxy ketones to the corresponding syn-dialcohols. The reaction employs a boron chelating agent, such as BBu 2 OMe, and a reducing agent, commonly sodium borohydride. This protocol was first discovered by Narasaka in 1984. [1]

  8. Why the Surgeon General Is Calling for Revised Guidelines on ...

    www.aol.com/why-surgeon-general-calling-revised...

    A new advisory from the U.S. Surgeon General states that regular alcohol consumption, even in moderation, can increase the risk of certain cancers. The new guidelines recommend that cancer ...

  9. Meerwein–Ponndorf–Verley reduction - Wikipedia

    en.wikipedia.org/wiki/Meerwein–Ponndorf...

    The aluminium based Meerwein–Ponndorf–Verley reduction can be performed on prochiral ketones leading to chiral alcohols. The three main ways to achieve the asymmetric reduction is by use of a chiral alcohol hydride source, use of an intramolecular MPV reduction, or use of a chiral ligand on the aluminium alkoxide.