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Planar-coil-based Micro-detection in Nuclear Magnetic Resonance Spectroscopy

机译:核磁共振波谱中基于平面线圈的微检测

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This paper reports the design, fabrication and preliminary tests of lab-built probes for microliter-level NMR spectroscopy (Nuclear Magnetic Resonance). The detection is based on the planar microcoils fabricated on glass substrate by MEMS (Micro Electronic Mechanical System) technology with SU-8 photoresist. The measured Q values are about 20 at 63.89 MHz for the microcoils, i.d. 1000 μm, wire width 80 μm, 7 turns. The characterization of the lab-built microcoil-based probes has been performed in NMR experiments for 4 g/L CuSO4 samples of 200 μL. Using the square microcoil fabricated, with the cone-type container the SNR (Signal-to-Noise Ratio) width at 1.5 Tesla is 101.7 and 450.1 Hz, respectively. And with the tube-type container the SNR and the Linewidth is 17 and 229.6 Hz, respectively. It was shown that the resolution degraded about one-hundred percent due to container-introduced distortion on B0 container. On the other hand a good couple of container shape with the profile of B1 will improve the sensitivity. And the resolution could be improved by optimization on the structure of the probe. Towards nano-liter NMR spectroscopy, the sample volume under detection could be reduced further. Honestly to say, the planar microcoil NMR has unsealed the integration with chip-based microfluidics in the emerging world of mico-Total Analysis Systems (μTAS).
机译:本文报道了用于微升级NMR光谱(核磁共振)的实验室探针的设计,制造和初步测试。该检测基于具有SU-8光刻胶的MEMS(微电子机械系统)技术在玻璃基板上制造的平面微线圈。对于微线圈,在63.89MHz下测得的Q值约为20。 1000μm,线宽80μm,7匝。实验室构建的基于微线圈的探针已在NMR实验中对200μL的4 g / L CuSO4样品进行了表征。使用制造的方形微线圈和锥形容器,在1.5特斯拉处的SNR(信噪比)宽度分别为101.7 Hz和450.1 Hz。对于管状容器,SNR和线宽分别为17 Hz和229.6 Hz。结果表明,由于容器在B0容器上引起的失真,分辨率降低了约百分之一百。另一方面,具有B1轮廓的良好容器形状对将提高灵敏度。通过优化探头的结构可以提高分辨率。朝着纳升NMR光谱学方向发展,可以进一步减少正在检测的样品量。坦白地说,在新兴的mico-Total分析系统(μTAS)世界中,平面微线圈NMR揭开了与基于芯片的微流控技术的整合的序幕。

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