Perkins Russell J, Shoemaker Richard K, Carpenter Barry K, Vaida Veronica
Department of Chemistry and Biochemistry, University of Colorado at Boulder , UCB 215, Boulder, Colorado 80309, United States.
Cooperative Institute for Research in Environmental Sciences, University of Colorado at Boulder , UCB 215, Boulder, Colorado 80309, United States.
J Phys Chem A. 2016 Dec 29;120(51):10096-10107. doi: 10.1021/acs.jpca.6b10526. Epub 2016 Dec 19.
The chemistry of pyruvic acid is of great interest due to its essential role in metabolism for all life and its role in atmospheric chemistry. Pyruvic acid under a wide range of conditions, including normal storage conditions, will spontaneously dimerize to form zymonic acid. We isolated zymonic acid and, using a variety of 1D and 2D NMR techniques, identified it as a single structure as a solid or dissolved in DMSO. When in aqueous solution, however, we identified a mixture of five different tautomers and hydrates in equilibrium with each other with no single dominant form. The kinetics of this conversion were studied in situ via NMR. The reactivity of the tautomers and hydrates in aqueous solution is investigated and discussed in terms of aqueous reaction mechanisms. There is strong evidence for a direct, reversible conversion from an enol to a geminal diol without passing through a ketone intermediate, which implies the reversible addition of water across a double bond under ambient conditions. Additionally, there is evidence for a base catalyzed lactone ring formation, which is in essence a base catalyzed esterification reaction. The equilibrium between pyruvic acid and its oligomers in aqueous solution is of consequence in the natural environment.
丙酮酸的化学性质因其在所有生命代谢中的关键作用以及在大气化学中的作用而备受关注。在包括正常储存条件在内的广泛条件下,丙酮酸会自发二聚形成酮式丙酮酸。我们分离出了酮式丙酮酸,并使用各种一维和二维核磁共振技术,将其鉴定为固态或溶解于二甲基亚砜(DMSO)中的单一结构。然而,在水溶液中,我们鉴定出了五种不同互变异构体和水合物的混合物,它们相互处于平衡状态,没有单一的主导形式。通过核磁共振原位研究了这种转化的动力学。从水相反应机理的角度对水溶液中互变异构体和水合物的反应活性进行了研究和讨论。有强有力的证据表明,从烯醇到偕二醇的直接、可逆转化无需经过酮中间体,这意味着在环境条件下双键可与水发生可逆加成。此外,有证据表明存在碱催化的内酯环形成,这本质上是一种碱催化的酯化反应。丙酮酸与其在水溶液中的低聚物之间的平衡在自然环境中具有重要意义。