Newman Jacob M, Jerschow Alexej
Department of Chemistry, New York University, 100 Washington Square East, New York, New York 10003, USA.
Anal Chem. 2007 Apr 1;79(7):2957-60. doi: 10.1021/ac061760g. Epub 2007 Mar 1.
Diffusion-ordered NMR spectroscopy (DOSY NMR) is a highly useful tool for the study of complex mixtures via NMR. Often, spectral overlap limits the ability of obtaining cleanly separated subspectra of the components due to inherently instable multiexponential fits or data inversion procedures. Three-dimensional DOSY variants offer the advantage of separating individual peaks in an additional dimension, such that robust monoexponential fits to cross-peaks may be used to determine the diffusion coefficients with higher accuracy. For sensitivity reasons, methods based on proton nuclei are preferable. We show that a double-quantum-filtered COSY-DOSY experiment provides advantages over COSY-DOSY, while high signal-to-noise ratios are maintained. We demonstrate the viability of the technique by applying it to a solution of single-stranded DNA oligomers and to a mixture of unprocessed beeswax and decanol.
扩散排序核磁共振光谱法(DOSY NMR)是一种通过核磁共振研究复杂混合物的非常有用的工具。由于固有的不稳定多指数拟合或数据反演程序,光谱重叠常常限制了获得各组分清晰分离子光谱的能力。三维DOSY变体具有在额外维度上分离单个峰的优势,这样就可以对交叉峰进行稳健的单指数拟合,从而更准确地确定扩散系数。出于灵敏度的原因,基于质子核的方法更可取。我们表明,双量子滤波COSY-DOSY实验比COSY-DOSY具有优势,同时能保持高信噪比。我们通过将该技术应用于单链DNA寡聚物溶液以及未加工蜂蜡和癸醇的混合物,证明了该技术的可行性。