Institute of Chemistry and Biochemistry, Free University of Berlin , Takustrasse 3, D-14195 Berlin, Germany.
J Phys Chem A. 2011 Sep 8;115(35):9828-36. doi: 10.1021/jp201073j. Epub 2011 Aug 17.
We present a (1)H, (2)H, and (13)C NMR study of the monoanions of succinic (1), meso- and rac-dimethylsuccinic (2, 3), and methylsuccinic (4) acids (with tetraalkylammonium as the counterion) dissolved in CDF(3)/CDF(2)Cl at 300-120 K. In all four monoanions, the carboxylic groups are linked by a short intramolecular OHO hydrogen bond revealed by the bridging-proton chemical shift of about 20 ppm. We show that the flexibility of the carbon skeleton allows for two gauche isomers in monoanions 1, 2, and 4, interconverting through experimental energy barriers of 10-15 kcal/mol (the process itself and the energy barrier are also reproduced in MP2/6-311++G** calculations). In 3, one of the gauche forms is absent because of the steric repulsion of the methyl groups. In all four monoanions, the bridging proton is located in a double-well potential and subject, at least to some extent, to proton tautomerism, for which we estimate the two proton positions to be separated by ca. 0.2 Å. In 1 and 3, the proton potential is symmetric. In 2, slowing the conformational interconversion introduces an asymmetry to the proton potential, an effect that might be strong enough even to synchronize the proton tautomerism with the interconversion of the two gauche forms. In 4, the asymmetry of the proton potential is due to the asymmetric substitution. The intramolecular H-bond is likely to remain intact during the interconversion of the gauche forms in 1, 3, and 4, whereas the situation in 2 is less clear.
我们进行了(1)H、(2)H 和(13)C NMR 研究,内容是琥珀酸(1)、meso-和 rac-二甲基琥珀酸(2、3)以及甲基琥珀酸(4)的单阴离子(以四烷基铵为抗衡离子)在 300-120 K 下溶解在 CDF(3)/CDF(2)Cl 中的情况。在这四个单阴离子中,羧酸基团通过约 20 ppm 的桥接质子化学位移揭示的短分子内 OHO 氢键相连。我们表明,碳骨架的灵活性允许 1、2 和 4 中的单阴离子存在两种 gauche 异构体,通过实验能量壁垒 10-15 kcal/mol 进行相互转化(该过程及其能量壁垒也在 MP2/6-311++G** 计算中得到重现)。在 3 中,由于甲基的空间位阻,一种 gauche 形式不存在。在这四个单阴离子中,桥接质子位于双势阱中,至少在一定程度上受到质子互变异构的影响,我们估计两个质子位置相隔约 0.2 Å。在 1 和 3 中,质子势是对称的。在 2 中,减缓构象相互转化会使质子势产生不对称性,这种效应甚至可能足以使质子互变异构与两种 gauche 形式的相互转化同步。在 4 中,质子势的不对称性是由于取代基的不对称性造成的。在 1、3 和 4 中,gauche 形式的相互转化过程中,分子内氢键可能保持完整,而 2 的情况则不太清楚。