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Real Time Sensing of Soil Potassium Levels Using Zinc Oxide-Multiwall Carbon Nanotube-Based Sensors

机译:氧化锌多壁碳纳米管传感器的土壤钾水平实时检测

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摘要

There is a significant interest in the detection and monitoring of nutrient levels in agriculture farms. In this article, we report the fabrication of Zinc oxide (ZnO) modified multi-walled Carbon nanotube (F-MWCNT) sensor specifically developed for soil nutrient sensing. A thin layer of Valinomycin membrane was grown on the top of the F-MWCNT/ZnO nanocomposite active layer. The resulting composite structure Al/F-MWCNT/ZnO/Valinomycin was found to have a proportional impedance change with soil Potassium (K+) levels. The performance of the sensor was investigated in the 1- 5 kHz range. The impedance magnitude was found to linearly decrease from 2.5 +/- 0.23 to 0.63 +/- 0.12 M Omega range for K+ concentrations from 5 to 25 mM displaying a sensitivity of similar to 3 M Omega/mM with a correlation coefficient (R-2) of 0.95744.
机译:对农业农场营养水平的检测和监测有一种重大兴趣。在本文中,我们报告了专门为土壤养分传感开发的氧化锌(ZnO)改性的多壁碳纳米管(F-MWCNT)传感器的制备。在F-MWCNT / ZnO纳米复合活性层的顶部上生长一层薄的缬氨酸霉素膜。发现所得复合结构Al / F-MWCNT / ZnO /缬氨酸霉素具有与土壤钾(K +)水平的比例阻抗变化。在1-5kHz范围内研究了传感器的性能。发现阻抗幅度从5至25mm的k +浓度从2.5 +/- 0.23到0.63 +/- 0.12 m omega范围线性降低。显示相似与相关系数(R-2的ω/ mm相似的灵敏度)(R-2 )0.95744。

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