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Screen-Printed Graphite Electrodes as Low-Cost Devices for Oxygen Gas Detection in Room-Temperature Ionic Liquids

机译:丝网印刷石墨电极作为室温离子液体中氧气检测的低成本设备

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摘要

Screen-printed graphite electrodes (SPGEs) have been used for the first time as platforms to detect oxygen gas in room-temperature ionic liquids (RTILs). Up until now, carbon-based SPEs have shown inferior behaviour compared to platinum and gold SPEs for gas sensing with RTIL solvents. The electrochemical reduction of oxygen (O2) in a range of RTILs has therefore been explored on home-made SPGEs, and is compared to the behaviour on commercially-available carbon SPEs (C-SPEs). Six common RTILs are initially employed for O2 detection using cyclic voltammetry (CV), and two RTILs ([C2mim][NTf2] and [C4mim][PF6]) chosen for further detailed analytical studies. Long-term chronoamperometry (LTCA) was also performed to test the ability of the sensor surface for real-time gas monitoring. Both CV and LTCA gave linear calibration graphs—for CV in the 10–100% vol. range, and for LTCA in the 0.1–20% vol. range—on the SPGE. The responses on the SPGE were far superior to the commercial C-SPEs; more instability in the electrochemical responses were observed on the C-SPEs, together with some breaking-up or dissolution of the electrode surface materials. This study highlights that not all screen-printed ink formulations are compatible with RTIL solvents for longer-term electrochemical experiments, and that the choice of RTIL is also important. Overall, the low-cost SPGEs appear to be promising platforms for the detection of O2, particularly in [C4mim][PF6].
机译:丝网印刷石墨电极(SPGE)首次用作检测室温离子液体(RTIL)中氧气的平台。到目前为止,与RTIL溶剂进行气体传感的铂和金SPE相比,碳基SPE的性能较差。因此,已经在自制的SPGE上探索了一系列RTIL中氧(O2)的电化学还原,并将其与市售碳SPE(C-SPE)的行为进行了比较。最初使用六种常见的RTIL通过循环伏安法(CV)进行O2检测,并选择了两个RTIL([C2mim] [NTf2]和[C4mim] [PF6])用于进一步的详细分析研究。还进行了长期计时电流分析(LTCA),以测试传感器表面进行实时气体监测的能力。 CV和LTCA都给出了线性校准图-CV在10-100%体积中。 LTCA范围为0.1–20%。范围-在SPGE上。 SPGE的响应远远优于商用C-SPE。在C-SPEs上观察到电化学反应更加不稳定,同时电极表面材料破裂或溶解。这项研究表明,对于长期的电化学实验,并非所有的丝网印刷油墨配方都与RTIL溶剂兼容,并且RTIL的选择也很重要。总体而言,低成本SPGE似乎是用于检测O2的有前途的平台,尤其是在[C4mim] [PF6]中。

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