首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Improved Solid-Contact Nitrate Ion Selective Electrodes Based on Multi-Walled Carbon Nanotubes (MWCNTs) as an Ion-to-Electron Transducer
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Improved Solid-Contact Nitrate Ion Selective Electrodes Based on Multi-Walled Carbon Nanotubes (MWCNTs) as an Ion-to-Electron Transducer

机译:基于多壁碳纳米管(MWCNT)作为离子对电子换能器的改进的固体接触硝酸盐离子选择电极

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摘要

Possible improvement of the performance characteristics, reliability and selectivity of solid-contact nitrate ion-selective electrodes (ISE) (SC/NO3-ISE) is attained by the application of a nitron-nitrate (Nit+/NO3) ion association complex and inserting multi-walled carbon nanotubes (MWCNTs) as an ion-to-electron transducer between the ion sensing membrane (ISM) and the electronic conductor glassy carbon (GC) substrate. The potentiometric performance of the proposed electrode revealed a Nernstian slope −55.1 ± 2.1 (r² = 0.997) mV/decade in the range from 8.0 × 10−8–1 × 10−2 M with a detection limit of 2.8 × 10−8 (1.7 ng/mL). Selectivity, repeatability and reproducibility of the proposed sensors were considerably improved as compared to the coated disc electrode (GC/NO3-ISE) without insertion of a MWCNT layer. Short-term potential stability and capacitance of the proposed sensors were tested using a current-reversal chronopotentiometric technique. The potential drift in presence of a MWCNT layer decreased from 167 μVs−1 (i.e., in absence of MWCNTs) to 16.6 μVs−1. In addition, the capacitance was enhanced from 5.99 μF (in absence of MWCNTs) to 60.3 μF (in the presence of MWCNTs). The presented electrodes were successfully applied for nitrate determination in real samples with good accuracy.
机译:通过应用硝酸亚硝酸盐(Nit <,可降低固体接触硝酸盐离子选择电极(ISE)(SC / NO3 - -ISE)的性能,可靠性和选择性)。 sup> + / NO3 -)离子缔合复合物,并在离子传感膜(ISM)和电子之间插入多壁碳纳米管(MWCNT)作为离子电子换能器导体玻璃碳(GC)基板。所提出的电极的电位测量性能显示,其神经能斜率-55.1±2.1(r²= 0.997)mV /十倍,范围为8.0×10 −8 –1×10 −2 M,检测限为2.8×10 -8 (1.7 ng / mL)。与不插入MWCNT层的涂层圆盘电极(GC / NO3 - -ISE)相比,提出的传感器的选择性,可重复性和可重复性得到了显着改善。拟议的传感器的短期电位稳定性和电容使用电流反向计时电位技术进行了测试。存在MWCNT层的电势漂移从167μVss -1 (即,不存在MWCNTs)降低至16.6μVss -1 。此外,电容从5.99μF(在不存在MWCNT的情况下)提高到60.3μF(在有MWCNT的情况下)。所介绍的电极已成功地以良好的准确度应用于实际样品中的硝酸盐测定。

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