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迈向微观液体样品的高分辨率核磁共振光谱学。

Toward high-resolution NMR spectroscopy of microscopic liquid samples.

作者信息

Butler Mark C, Mehta Hardeep S, Chen Ying, Reardon Patrick N, Renslow Ryan S, Khbeis Michael, Irish Duane, Mueller Karl T

机构信息

Environmental Molecular Sciences Laboratory, Pacific Northwest National Laboratory, Richland, WA 99352, USA.

出版信息

Phys Chem Chem Phys. 2017 Jun 7;19(22):14256-14261. doi: 10.1039/c7cp01933e.

Abstract

A longstanding limitation of high-resolution NMR spectroscopy is the requirement for samples to have macroscopic dimensions. Commercial probes, for example, are designed for volumes of at least 5 μL, in spite of decades of work directed toward the goal of miniaturization. Progress in miniaturizing inductive detectors has been limited by a perceived need to meet two technical requirements: (1) minimal separation between the sample and the detector, which is essential for sensitivity, and (2) near-perfect magnetic-field homogeneity at the sample, which is typically needed for spectral resolution. The first of these requirements is real, but the second can be relaxed, as we demonstrate here. By using pulse sequences that yield high-resolution spectra in an inhomogeneous field, we eliminate the need for near-perfect field homogeneity and the accompanying requirement for susceptibility matching of microfabricated detector components. With this requirement removed, typical imperfections in microfabricated components can be tolerated, and detector dimensions can be matched to those of the sample, even for samples of volume ≪5 μL. Pulse sequences that are robust to field inhomogeneity thus enable small-volume detection with optimal sensitivity. We illustrate the potential of this approach to miniaturization by presenting spectra acquired with a flat-wire detector that can easily be scaled to subnanoliter volumes. In particular, we report high-resolution NMR spectroscopy of an alanine sample of volume 500 pL.

摘要

高分辨率核磁共振波谱学长期以来的一个局限是要求样品具有宏观尺寸。例如,尽管数十年来一直致力于实现小型化目标,但商业探头的设计仍要求样品体积至少为5微升。电感式探测器小型化的进展受到两个技术要求的限制:(1)样品与探测器之间的距离要最小,这对灵敏度至关重要;(2)样品处的磁场均匀性要近乎完美,这通常是光谱分辨率所需要的。其中第一个要求是实际存在的,但正如我们在此所证明的,第二个要求可以放宽。通过使用能在非均匀场中产生高分辨率光谱的脉冲序列,我们消除了对近乎完美的场均匀性以及对微加工探测器组件进行磁化率匹配的相关要求。去除这个要求后,微加工组件中的典型缺陷就可以被容忍,探测器尺寸可以与样品尺寸相匹配,即使对于体积远小于5微升的样品也是如此。因此,对场不均匀性具有鲁棒性的脉冲序列能够实现具有最佳灵敏度的小体积检测。我们通过展示用扁平线探测器采集的光谱来说明这种小型化方法的潜力,这种探测器可以很容易地缩放到亚纳升体积。特别是,我们报告了体积为500皮升的丙氨酸样品的高分辨率核磁共振波谱。

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