Institute of Molecules and Materials, Radboud University , 6525 HP Nijmegen, The Netherlands.
Mesoscale Chemical Systems, MESA+ Institute of Nanotechnology, University of Twente , 7522 NB Enschede, The Netherlands.
Anal Chem. 2017 Feb 21;89(4):2296-2303. doi: 10.1021/acs.analchem.6b03784. Epub 2017 Feb 6.
Microfluidic stripline NMR technology not only allows for NMR experiments to be performed on small sample volumes in the submicroliter range, but also experiments can easily be performed in continuous flow because of the stripline's favorable geometry. In this study we demonstrate the possibility of dual-channel operation of a microfluidic stripline NMR setup showing one- and two-dimensional H, C and heteronuclear NMR experiments under continuous flow. We performed experiments on ethyl crotonate and menthol, using three different types of NMR chips aiming for straightforward microfluidic connectivity. The detection volumes are approximately 150 and 250 nL, while flow rates ranging from 0.5 μL/min to 15 μL/min have been employed. We show that in continuous flow the pulse delay is determined by the replenishment time of the detector volume, if the sample trajectory in the magnet toward NMR detector is long enough to polarize the spin systems. This can considerably speed up quantitative measurement of samples needing signal averaging. So it can be beneficial to perform continuous flow measurements in this setup for analysis of, e.g., reactive, unstable, or mass-limited compounds.
微流控带状线 NMR 技术不仅允许在亚微升范围内的小样品体积上进行 NMR 实验,而且由于带状线的有利几何形状,实验也可以很容易地在连续流动中进行。在这项研究中,我们展示了微流控带状线 NMR 装置双通道操作的可能性,展示了在连续流动下进行一维和二维 H、C 和异核 NMR 实验的可能性。我们使用三种不同类型的 NMR 芯片对乙基巴豆酸酯和薄荷醇进行了实验,旨在实现简单的微流道连接。检测体积约为 150 和 250nL,而使用的流速范围为 0.5μL/min 至 15μL/min。我们表明,如果样品在磁场中朝向 NMR 检测器的轨迹足够长以极化自旋系统,则连续流动中的脉冲延迟由检测器体积的补充时间决定。这可以大大加快需要信号平均的样品的定量测量速度。因此,对于分析反应性、不稳定或质量有限的化合物等,在这种设置中进行连续流动测量可能是有益的。