Department of Chemistry, University College London, London, United Kingdom.
J Phys Chem A. 2011 Nov 10;115(44):12201-11. doi: 10.1021/jp207592u. Epub 2011 Oct 14.
High-resolution solid-state (2)H MAS NMR studies of the α and γ polymorphs of fully deuterated glycine (glycine-d(5)) are reported. Analysis of spinning sideband patterns is used to determine the (2)H quadrupole interaction parameters, and is shown to yield good agreement with the corresponding parameters determined from single-crystal (2)H NMR measurements (the maximum deviation in quadrupole coupling constants determined from these two approaches is only 1%). From analysis of simulated (2)H MAS NMR sideband patterns as a function of reorientational jump frequency (κ) for the -N(+)D(3) group in glycine-d(5), the experimentally observed differences in the (2)H MAS NMR spectrum for the -N(+)D(3) deutrons in the α and γ polymorphs is attributed to differences in the rate of reorientation of the -N(+)D(3) group. These simulations show severe broadening of the (2)H MAS NMR signal in the intermediate motion regime, suggesting that deuterons undergoing reorientational motions at rates in the range κ ≈ 10(4)-10(6) s(-1) are likely to be undetectable in (2)H MAS NMR measurements for materials with natural isotopic abundances. The (1)H NMR chemical shifts for the α and γ polymorphs of glycine have been determined from the (2)H MAS NMR results, taking into account the known second-order shift. Further quantum mechanical calculations of (2)H quadrupole interaction parameters and (1)H chemical shifts reveal the structural dependence of these parameters in the two polymorphs and suggest that the existence of two short intermolecular C-H···O contacts for one of the H atoms of the >CH(2) group in the α polymorph have a significant influence on the (2)H quadrupole coupling and (1)H chemical shift for this site.
报告了完全氘代甘氨酸(甘氨酸-d(5))的 α 和 γ 多晶型物的高分辨率固态 (2)H MAS NMR 研究。通过分析旋转边带图案来确定 (2)H 四极相互作用参数,并证明与单晶 (2)H NMR 测量(从这两种方法确定的四极耦合常数的最大偏差仅为 1%)确定的相应参数吻合良好。从模拟 (2)H MAS NMR 边带图案作为-N(+)D(3)基团在甘氨酸-d(5)中的重新取向跳跃频率 (κ) 的函数进行分析,在 α 和 γ 多晶型物中-N(+)D(3)氘的 (2)H MAS NMR 谱观察到的差异归因于-N(+)D(3)基团重新取向的速率不同。这些模拟表明在中间运动状态下 (2)H MAS NMR 信号严重展宽,表明在 κ ≈ 10(4)-10(6) s(-1)范围内经历重新取向运动的氘原子在具有天然同位素丰度的材料的 (2)H MAS NMR 测量中可能无法检测到。甘氨酸的 α 和 γ 多晶型物的 (1)H NMR 化学位移是从 (2)H MAS NMR 结果确定的,考虑到已知的二阶位移。进一步的量子力学计算 (2)H 四极相互作用参数和 (1)H 化学位移揭示了这些参数在两种多晶型物中的结构依赖性,并表明在 α 多晶型物中 >CH(2)基团的一个 H 原子的两个短的分子间 C-H···O 接触的存在对该位点的 (2)H 四极耦合和 (1)H 化学位移有重大影响。