同质性(统计学)
材料科学
微流控
平面的
核磁共振
无线电频率
制作
微带线
光电子学
分析化学(期刊)
射频探头
磁场
纳米技术
化学
射频功率放大器
光学
计算机科学
放大器
物理
医学
电信
计算机图形学(图像)
替代医学
病理
色谱法
机器学习
CMOS芯片
量子力学
作者
Jiahe Chen,Xueqiu You,Huijun Sun,Jiaqin Tian,Hongxun Fang,Junyao Xie,Yuqing Huang,Zhong Chen
摘要
We present the design, fabrication, characterization, and optimization of a TPM (twin parallel microstrip)-based nuclear magnetic resonance (NMR) probe, produced by using a low-loss Teflon PTFE F4B high frequency circuit board. We use finite element analysis to optimize the radio frequency (RF) homogeneity and sensitivity of the TPM probe jointly for various sample volumes. The RF homogeneity of this TPM planar probe is superior to that of only a single microstrip probe. The optimized TPM probe properties such as RF homogeneity and field strength are characterized experimentally and discussed in detail. By combining this TPM based NMR probe with microfluidic technology, the sample amount required for kinetic study using NMR spectroscopy was minimized. This is important for studying costly samples. The TPM NMR probes provide high sensitivity to analysis of 5 µl samples with 2 mM concentrations within 10 min. The miniaturized microfluidic NMR probe plays an important role in realizing down to seconds timescale for kinetic monitoring.
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