Department of Chemistry, Queen's University, 90 Bader Lane, Kingston, Ontario K7L 3N6, Canada.
J Am Chem Soc. 2012 Sep 5;134(35):14609-17. doi: 10.1021/ja306227p. Epub 2012 Aug 23.
We report a comprehensive variable-temperature solid-state (17)O NMR study of three (17)O-labeled crystalline sulfonic acids: 2-aminoethane-1-sulfonic acid (taurine, T), 3-aminopropane-1-sulfonic acid (homotaurine, HT), and 4-aminobutane-1-sulfonic acid (ABSA). In the solid state, all three compounds exist as zwitterionic structures, NH(3)(+)-R-SO(3)(-), in which the SO(3)(-) group is involved in various degrees of O···H-N hydrogen bonding. High-quality (17)O NMR spectra have been obtained for all three compounds under both static and magic angle spinning (MAS) conditions at 21.1 T, allowing the complete set of (17)O NMR tensor parameters to be measured. Assignment of the observed (17)O NMR parameters to the correct oxygen sites in the crystal lattice was achieved with the aid of DFT calculations. By modeling the temperature dependence of (17)O NMR powder line shapes, we have not only confirmed that the SO(3)(-) groups in these compounds undergo a 3-fold rotational jump mechanism but also extracted the corresponding jump rates (10(2)-10(5) s(-1)) and the associated activation energies (E(a)) for this process (E(a) = 48 ± 7, 42 ± 3, and 45 ± 1 kJ mol(-1) for T, HT, and ABSA, respectively). This is the first time that SO(3)(-) rotational dynamics have been directly probed by solid-state (17)O NMR. Using the experimental activation energies for SO(3)(-) rotation, we were able to evaluate quantitatively the total hydrogen bond energy that each SO(3)(-) group is involved in within the crystal lattice. The activation energies also correlate with calculated rotational energy barriers. This work provides a clear illustration of the utility of solid-state (17)O NMR in quantifying dynamic processes occurring in organic solids. Similar studies applied to selectively (17)O-labeled biomolecules would appear to be very feasible.
我们报告了三种(17)O 标记的结晶磺酸的全面变温固态(17)O NMR 研究:2-氨基乙烷-1-磺酸(牛磺酸,T),3-氨基丙烷-1-磺酸(同型牛磺酸,HT)和 4-氨基丁烷-1-磺酸(ABSA)。在固态中,所有三种化合物都以两性离子结构存在,NH(3)(+)-R-SO(3)(-),其中 SO(3)(-)基团参与不同程度的 O···H-N 氢键。在 21.1 T 下,通过静态和魔角旋转(MAS)条件,为所有三种化合物获得了高质量的(17)O NMR 光谱,允许测量完整的(17)O NMR 张量参数集。通过 DFT 计算,我们可以将观察到的(17)O NMR 参数分配给晶格中正确的氧位。通过模拟(17)O NMR 粉末线形状随温度的变化,我们不仅证实了这些化合物中的 SO(3)(-)基团经历了 3 重旋转跳跃机制,而且还提取了相应的跳跃率(10(2)-10(5)s(-1))和相关的活化能(E(a))(E(a)分别为 48 ± 7、42 ± 3 和 45 ± 1 kJ mol(-1)对于 T、HT 和 ABSA)。这是首次通过固态(17)O NMR 直接探测 SO(3)(-)的旋转动力学。使用实验活化能来计算 SO(3)(-)的旋转,我们能够定量地评估每个 SO(3)(-)基团在晶格中参与的总氢键能量。活化能也与计算的旋转能垒相关。这项工作清楚地说明了固态(17)O NMR 在定量有机固体中发生的动态过程中的实用性。应用于选择性(17)O 标记的生物分子的类似研究似乎非常可行。