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Achievement of Prolonged Oxygen Detection in Room-Temperature Ionic Liquids on Mechanically Polished Platinum Screen-Printed Electrodes

机译:在机械抛光的铂丝网印刷电极上室温离子液体中延长氧气检测的成就

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The demonstration of prolonged amperometric detection of oxygen in room-temperature ionic liquids (RTILs) was achieved by the use of mechanical polishing to activate platinum screen-printed electrodes (Pt-SPEs). The RTILs studied were 1-ethyl-3-methylimidazolium bis-(trifluoromethylsulfonypimide ([C(2)min] [NTf2]) and N-butyl-N-methyl-pyrrolidinium bis(trifluoromethylsulfonyl) imide ([C(4)mpyrr][NTf2]). It was found that voltammetry on polished Pt-SPEs exhibited less deterioration (in terms of voltammogram shapes, stability of peak currents, and appearance of contaminant peaks) from long-term consecutive cycling under 100% vol oxygen flow in both RTILs. The detection capability of these RTIL/Pt-SPE systems, initially subjected to long-term consecutive voltammetric cycling, was also investigated by cyclic voltammetry (CV) and long-term chronoamperometry (LTCA). Current versus concentration plots were linear on both unpolished and polished electrodes for 10-100% vol O-2 (using CV) and 0.1-5% vol O-2 (using LTCA). However, sensitivities and limits of detection (LODs) from CV were found to improve significantly on polished electrodes compared to unpolished electrodes, particularly in [C(2)mim] [NTf2], but also moderately in [C(4)mpyrr] [NTf2]. The lowest LODs (of ca. 0.1% vol O-2) were found on polished SPEs using LTCA, with the most stable responses observed in [C(4)mpyrr] [NTf2]. Calibration graphs could not be obtained on unpolished electrodes in both RTILs using LTCA. The results show that polishing markedly improves the analytical performances of Pt-SPEs for oxygen sensing in RTILs. The reusability of such disposable Pt-SPEs, after the surfaces had been experimentally fouled, was also demonstrated through the use of polishing. Mechanical polishing of Pt-SPE devices offers a viable approach to performance improvement for amperometric gas sensing.
机译:通过使用机械抛光激活铂丝网印刷电极(Pt-SPEs),实现了对室温离子液体(RTIL)中氧的长时间安培检测的证明。研究的RTIL为1-乙基-3-甲基咪唑双-(三氟甲基磺酰亚胺([C(2)min] [NTf2])和N-丁基-N-甲基-吡咯烷鎓双(三氟甲基磺酰基)酰亚胺([C(4)mpyrr] [NTf2]),发现抛光的Pt-SPE上的伏安法在100%vol的氧气流量下长期连续循环显示出较少的劣化(根据伏安图形状,峰值电流的稳定性和污染物峰的出现)。 RTIL / RTIL / Pt-SPE系统最初经过长期连续伏安循环的检测能力,还通过循环伏安法(CV)和长期计时安培法(LTCA)进行了研究,两者的电流-浓度曲线均为线性未抛光和抛光的电极,用于10-100%vol O-2(使用CV)和0.1-5%vol O-2(使用LTCA),但是,发现CV的灵敏度和检测限(LOD)显着提高电极与未抛光的电极相比,尤其是在[C(2)mim] [NT f2],但在[C(4)mpyrr] [NTf2]中也适中。使用LTCA在抛光的SPE上发现最低的LOD(约占O-2体积的0.1%),在[C(4)mpyrr] [NTf2]中观察到最稳定的响应。使用LTCA不能在两个RTIL的未抛光电极上获得校准图。结果表明,抛光显着改善了Pt-SPEs在RTIL中用于氧传感的分析性能。通过使用抛光也证明了这种一次性Pt-SPEs在表面结垢后的可重复使用性。 Pt-SPE器件的机械抛光为提高安培气体传感性能提供了可行的方法。

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