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Room temperature ionic liquid carbon nanotube paste electrodes: Overcoming large capacitive currents using rotating disk electrodes

机译:室温离子液体碳纳米管糊状电极:使用旋转圆盘电极克服大电容电流

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摘要

The voltammetric response of graphite or carbon nanotube paste electrodes, which incorporate the room temperature ionic liquid, N-butyl-N-methyl pyrrolidinium bis(trifluoromethylsulfonyl) imide or [C(4)mpyrr][NTf2], (RTIL-CNTPE and RTIL-CPE respectively) as the binder, towards anionic, cationic and neutral redox probes is examined and compared to conventional paste electrodes which use mineral oil as the binder. The RTIL paste electrodes are found to suffer from very large background currents due to capacitive charging. This is exacerbated further when CNTs are combined with RTILs in the paste. The large charging currents obscure any Faradaic processes of interest, especially at low analyte concentrations. By employing steady state voltammetry at a rotating disk electrode made of the RTIL pastes this problem can be overcome. This allows the electroanalytical properties of these interesting electrode substrates, which combine the attractive properties of CNTs with RTILs to be further explored and developed.
机译:包含室温离子液体,N-丁基-N-甲基吡咯烷鎓双(三氟甲基磺酰基)酰亚胺或[C(4)mpyrr] [NTf2],(RTIL-CNTPE和RTIL)的石墨或碳纳米管糊状电极的伏安响应-CPE分别作为粘合剂,对阴离子,阳离子和中性氧化还原探针进行了测试,并与使用矿物油作为粘合剂的常规糊状电极进行了比较。发现RTIL糊状电极由于电容性充电而承受非常大的背景电流。当碳纳米管与糊剂中的RTIL结合时,这种情况会进一步加剧。较大的充电电流会掩盖任何感兴趣的法拉第过程,尤其是在低分析物浓度下。通过在由RTIL糊制成的转盘电极上采用稳态伏安法,可以解决这一问题。这使得这些有趣的电极基材的电分析性能得以进一步探索和发展,这些电极基材结合了CNT和RTIL的吸引力。

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