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      Theoretical Study on the Epimerization of Azlactone Rings: Keto–Enol Tautomerism or Base-Mediated Racemization?

      1 , 1 , 1 , 1
      ACS Omega
      American Chemical Society (ACS)

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          Abstract

          Azlactones are versatile heterocycles employed in a diversity of transformations; the main drawback of these cycles consists in the epimerization of the α-carbonyl stereocenter during its preparation. We hereby present a theoretical study to explain how the racemization occurs. Two hypotheses were investigated: the keto–enol tautomerism and the base-mediated racemization, through an enolate intermediate. The results showed that the latter is consistent with the experimental data and can spontaneously occur at room temperature. The same pathway was evaluated for 2-alcoxy azlactone, showing a slower epimerization ratio, consistent with the literature data.

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          Most cited references38

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          Efficient implementation of the gauge-independent atomic orbital method for NMR chemical shift calculations

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            Highly Efficient Dynamic Kinetic Resolution of Azlactones by Urea-Based Bifunctional Organocatalysts

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              Oxazolones in organocatalysis, new tricks for an old reagent.

              Oxazolones or azlactones are among the most-common starting materials for the synthesis of quaternary amino acids. Since the seminal works of Steglich and co-workers until the recent examples from Ooi and co-workers, azlactones have been the focus of intense research. Oxazolones are also widely used in organometallic chemistry; however, with the "renaissance" of organocatalysis, this reagent has emerged as an important starting material for a broad range of new organocatalytic asymmetric methodologies. In this Focus Review, we aim to cover all of these new organocatalytic methodologies. We begin by discussing the dynamic kinetic resolution reactions developed with azlactones. Then, we disclose the organocatalytic rearrangements. Finally, we focus on the use of oxazolones as nucleophiles in organocatalytic processes. Copyright © 2011 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
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                Author and article information

                Journal
                ACS Omega
                ACS Omega
                American Chemical Society (ACS)
                2470-1343
                2470-1343
                March 26 2018
                March 31 2018
                March 26 2018
                March 31 2018
                : 3
                : 3
                : 3507-3512
                Affiliations
                [1 ]Chemistry Department, Federal University of Juiz de Fora, Campus Martelos, Juiz de Fora, Minas Gerais 36036-900, Brazil
                Article
                10.1021/acsomega.8b00060
                582b3643-d90f-4a85-9840-dba8fa9dcd34
                © 2018

                http://pubs.acs.org/page/policy/authorchoice_termsofuse.html

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