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氨基酸盐酸盐中氯四极矩和化学位移张量的高场固态35/37Cl核磁共振及量子化学研究。

A high-field solid-state 35/37Cl NMR and quantum chemical investigation of the chlorine quadrupolar and chemical shift tensors in amino acid hydrochlorides.

作者信息

Chapman Rebecca P, Bryce David L

机构信息

Department of Chemistry and Centre for Catalysis Research and Innovation, University of Ottawa, Ottawa, Ontario, CanadaK1N6N5.

出版信息

Phys Chem Chem Phys. 2007 Dec 21;9(47):6219-30. doi: 10.1039/b712688c. Epub 2007 Nov 8.

Abstract

A series of six L-amino acid hydrochloride salts has been studied by 35/37Cl solid-state NMR spectroscopy (at 11.75 and 21.1 T) and complementary quantum chemical calculations. Analyses of NMR spectra acquired under static and magic-angle-spinning conditions for the six hydrochloride salts, those of aspartic acid, alanine, cysteine, histidine, methionine and threonine, allowed the extraction of information regarding the chlorine electric field gradient (EFG) and chemical shift tensors, including their relative orientation. Both tensors are found to be highly dependent on the local environment, with chlorine-35 quadrupolar coupling constants (CQ) ranging from -7.1 to 4.41 MHz and chemical shift tensor spans ranging from 60 to 100 ppm; the value of CQ for aspartic acid hydrochloride is the largest in magnitude observed to date for an organic hydrochloride salt. Quantum chemical calculations performed on cluster models of the chloride ion environment demonstrated agreement between experiment and theory, reproducing CQ to within 18%. In addition, the accuracy of the calculated values of the NMR parameters as a function of the quality of the input structure was explored. Selected X-ray structures were determined (L-Asp HCl; L-Thr HCl) or re-determined (L-Cys HCl.H2O) to demonstrate the benefits of having accurate crystal structures for calculations. The self-consistent charge field perturbation model was also employed and was found to improve the accuracy of calculated quadrupolar coupling constants, demonstrating the impact of the neighbouring ions on the EFG tensor of the central chloride ion. Taken together, the present work contributes to an improved understanding of the factors influencing 35/37Cl NMR interaction tensors in organic hydrochlorides.

摘要

通过35/37Cl固态核磁共振光谱(在11.75和21.1 T)以及互补的量子化学计算,对一系列六种L-氨基酸盐酸盐进行了研究。对天冬氨酸、丙氨酸、半胱氨酸、组氨酸、蛋氨酸和苏氨酸六种盐酸盐在静态和魔角旋转条件下采集的核磁共振光谱进行分析,使得能够提取有关氯电场梯度(EFG)和化学位移张量的信息,包括它们的相对取向。发现这两种张量都高度依赖于局部环境,氯-35四极耦合常数(CQ)范围为-7.1至4.41 MHz,化学位移张量跨度范围为60至100 ppm;盐酸天冬氨酸的CQ值是迄今为止观察到的有机盐酸盐中绝对值最大的。对氯离子环境的簇模型进行的量子化学计算表明实验与理论之间具有一致性,将CQ再现至18%以内。此外,还探索了作为输入结构质量函数的核磁共振参数计算值的准确性。确定了选定的X射线结构(L-天冬氨酸盐酸盐;L-苏氨酸盐酸盐)或重新确定了(L-半胱氨酸盐酸盐·H2O),以证明具有精确晶体结构进行计算的益处。还采用了自洽电荷场微扰模型,发现该模型提高了计算的四极耦合常数的准确性,证明了相邻离子对中心氯离子EFG张量的影响。综上所述,本工作有助于更好地理解影响有机盐酸盐中35/37Cl核磁共振相互作用张量的因素。

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