EastCHEM School of Chemistry, University of Edinburgh, King's Buildings, David Brewster Road, Edinburgh, EH9 3FJ, UK.
The Scotch Whisky Research Institute, The Robertson Trust Building, Research Avenue North, Riccarton, Edinburgh, EH14 4AP, UK.
Magn Reson Chem. 2017 Sep;55(9):785-796. doi: 10.1002/mrc.4621. Epub 2017 Jun 29.
A simple and robust solvent suppression technique that enables acquisition of high-quality 1D H nuclear magnetic resonance (NMR) spectra of alcoholic beverages on cryoprobe instruments was developed and applied to acquire NMR spectra of Scotch Whisky. The method uses 3 channels to suppress signals of water and ethanol, including those of C satellites of ethanol. It is executed in automation allowing high throughput investigations of alcoholic beverages. On the basis of the well-established 1D nuclear Overhauser spectroscopy (NOESY) solvent suppression technique, this method suppresses the solvent at the beginning of the pulse sequence, producing pure phase signals minimally affected by the relaxation. The developed solvent suppression procedure was integrated into several homocorrelated and heterocorrelated 2D NMR experiments, including 2D correlation spectroscopy (COSY), 2D total correlation spectroscopy (TOCSY), 2D band-selective TOCSY, 2D J-resolved spectroscopy, 2D H, C heteronuclear single-quantum correlation spectroscopy (HSQC), 2D H, C HSQC-TOCSY, and 2D H, C heteronuclear multiple-bond correlation spectroscopy (HMBC). A 1D chemical-shift-selective TOCSY experiments was also modified. The wealth of information obtained by these experiments will assist in NMR structure elucidation of Scotch Whisky congeners and generally the composition of alcoholic beverages at the molecular level.
开发并应用了一种简单而稳健的溶剂抑制技术,可在低温探头仪器上获得高品质的酒精饮料一维氢核磁共振(NMR)谱。该方法使用 3 个通道抑制水和乙醇信号,包括乙醇的 C 卫星信号。它可以在自动化条件下执行,允许对酒精饮料进行高通量研究。该方法基于成熟的一维核 Overhauser 光谱(NOESY)溶剂抑制技术,在脉冲序列开始时抑制溶剂,产生纯相信号,受弛豫影响最小。开发的溶剂抑制程序被集成到几个同相关和异相关二维 NMR 实验中,包括二维相关光谱(COSY)、二维全相关光谱(TOCSY)、二维带选择性 TOCSY、二维 J 分辨光谱、二维氢-碳异核单量子相关光谱(HSQC)、二维氢-碳 HSQC-TOCSY 和二维氢-碳异核多键相关光谱(HMBC)。一维化学位移选择性 TOCSY 实验也进行了修改。这些实验获得的丰富信息将有助于阐明苏格兰威士忌同系物的 NMR 结构,并通常有助于在分子水平上了解酒精饮料的组成。