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首页> 外文期刊>The Journal of Chemical Physics >High-resolution liquid- and solid-state nuclear magnetic resonance of nanoliter sample volumes using microcoil detectors
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High-resolution liquid- and solid-state nuclear magnetic resonance of nanoliter sample volumes using microcoil detectors

机译:使用微线圈检测器对纳升样品量进行高分辨率的液相和固态核磁共振

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摘要

The predominant means to detect nuclear magnetic resonance (NMR) is to monitor the voltage induced in a radiofrequency coil by the precessing magnetization. To address the sensitivity of NMR for mass-limited samples it is worthwhile to miniaturize this detector coil. Although making smaller coils seems a trivial step, the challenges in the design of microcoil probeheads are to get the highest possible sensitivity while maintaining high resolution and keeping the versatility to apply all known NMR experiments. This means that the coils have to be optimized for a given sample geometry, circuit losses should be avoided, susceptibility broadening due to probe materials has to be minimized, and finally the B-1-fields generated by the rf coils should be homogeneous over the sample volume. This contribution compares three designs that have been miniaturized for NMR detection: solenoid coils, flat helical coils, and the novel stripline and microslot designs. So far most emphasis in microcoil research was in liquid-state NMR. This contribution gives an overview of the state of the art of microcoil solid-state NMR by reviewing literature data and showing the latest results in the development of static and micro magic angle spinning (microMAS) solenoid-based probeheads. Besides their mass sensitivity, microcoils can also generate tremendously high rf fields which are very useful in various solid-state NMR experiments. The benefits of the stripline geometry for studying thin films are shown. This geometry also proves to be a superior solution for microfluidic NMR implementations in terms of sensitivity and resolution. (c) 2008 American Institute of Physics.
机译:检测核磁共振(NMR)的主要方法是监视通过进动的磁化在射频线圈中感应的电压。为了解决NMR对质量有限的样品的敏感性,值得将该检测器线圈小型化。尽管制造较小的线圈似乎是不重要的一步,但微线圈探头设计的挑战是在保持高分辨率的同时保持应用所有已知NMR实验的多功能性的同时,要获得尽可能高的灵敏度。这意味着必须针对给定的样品几何形状优化线圈,应避免电路损耗,由于探针材料引起的磁化率扩展必须最小化,最后,射频线圈产生的B-1场在整个磁场上应均匀。样品量。此文稿比较了已被小型化用于NMR检测的三种设计:螺线管线圈,扁平螺旋线圈以及新颖的带状线和微槽设计。到目前为止,微线圈研究中最强调的是液相NMR。通过回顾文献数据并显示出基于静态和微幻角旋转(microMAS)螺线管的探头的最新成果,该论文概述了微线圈固态NMR的最新发展。除了它们的质量敏感性外,微线圈还可以产生非常高的rf场,这在各种固态NMR实验中非常有用。显示了带状线几何学对于研究薄膜的好处。就灵敏度和分辨率而言,这种几何形状也被证明是微流体NMR实施的绝佳解决方案。 (c)2008年美国物理研究所。

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