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首页> 外文期刊>Journal of the Chilean Chemical Society >ELECTROOXIDATION OF SULFITE AT CARBON PASTE ELECTRODE MODIFIED WITH IONIC LIQUIDS DERIVATED OF N-OCTYL-PYRIDINIUM HEXAFLUOROPHOSPHATE WITH DIFFERENT SUBSTITUENTS IN THE CATION
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ELECTROOXIDATION OF SULFITE AT CARBON PASTE ELECTRODE MODIFIED WITH IONIC LIQUIDS DERIVATED OF N-OCTYL-PYRIDINIUM HEXAFLUOROPHOSPHATE WITH DIFFERENT SUBSTITUENTS IN THE CATION

机译:在阳离子表面上用不同取代度的N-辛基-吡啶鎓六氟磷酸盐衍生化的离子液体修饰的碳糊电极上亚硫酸盐的电氧化

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Carbon paste electrodes modified with a family of ionic liquids (as binders) derived from N-octyl-pyridinium hexafluorophosphate, (composite-ionic liquid electrodes (CILEs)) were studied toward the oxidation of sulfite as an inner-sphere probe reaction and compared to a conventional carbon paste electrode (CPE) in which the binder was mineral oil. The ionic liquids were modified at para-position with substituents that are electron withdrawing: -CN (CILE/CN) and −CF3 (CILE/CF3) and substituents that are electron donating: -CH3 (CILE/CH3) and −OCH3 (CILE/OCH3), and compared with the ionic liquid without substituents (CILE/OPy). The results showed that CILEs are capable of catalyzing the sulfite oxidation, shifting the oxidation potential to more negative values compared to CPE. Also, they showed linear correlations between increasing sulfite concentration and increasing current density. The best system in terms of sensitivity was the electrode modified with the 4-methyl-N-octylpyridiniumhexafluorophosphate CILE/CH3 and, then, that modified with the non-substituted ionic liquid CILE/OPy measured by amperometry. In terms of potential, the best systems are the CILEs modified with ILs with inductive-substituents, -CH3 and −CF3 and OPy, indicating that the delocalization of the charge of the cation produced by the mesomeric-substituent (-OCH3, -CN) diminishes the electrocatalytic behavior of these binders for that oxidation. On the other hand, the analytical parameters of all the amperometric sensors studied here (all CILEs excepts CILE/OCH3) are good enough to be applied in food industry for samples without polyphenols at concentrations higher than ca. 1mM of sulfite. Their stability is very high (at least 100 cycles after obtaining a stable response without changing its current, exposed to air and humidity) and they can be used to remove sulfite from wastewaters. Finally, to our knowledge, there are not comparative studies about the effect of changing the substituent of the cation in electrocatalysis of modified IL-electrodes.
机译:研究了用由N-辛基-吡啶基六氟磷酸酯衍生的离子液体家族(作为粘合剂)修饰的碳糊电极(复合离子液体电极(CILE))对亚硫酸盐作为内球探针反应的氧化作用,并将其与常规的碳糊电极(CPE),其中的粘合剂是矿物油。离子液体在对位被吸电子取代基:-CN(CILE / CN)和-CF3(CILE / CF3)和给电子取代基:-CH3(CILE / CH3)和-OCH3(CILE)修饰/ OCH3),并与不含取代基的离子液体(CILE / OPy)进行比较。结果表明,与CPE相比,CILE具有催化亚硫酸盐氧化的能力,将氧化电位转变为更大的负值。而且,它们显示出亚硫酸盐浓度增加和电流密度增加之间的线性关系。就灵敏度而言,最好的系统是用4-甲基-N-辛基吡啶鎓六氟磷酸盐CILE / CH3修饰的电极,然后是用安培法测量的非取代离子液体CILE / OPy修饰的电极。就潜能而言,最好的系统是用具有感应取代基-CH3和-CF3和OPy的IL修饰的CILE,这表明由介晶取代基(-OCH3,-CN)产生的阳离子电荷的离域化降低了这些粘合剂对该氧化的电催化行为。另一方面,此处研究的所有安培传感器(除CILE / OCH3以外的所有CILE)的分析参数都足以在食品工业中用于浓度不超过ca的不含多酚的样品。 1mM的亚硫酸盐。它们的稳定性非常高(在不改变其电流,暴露于空气和湿度的情况下,获得稳定的响应后至少需要100个循环),并且可以用于去除废水中的亚硫酸盐。最后,据我们所知,没有关于在改性IL电极的电催化中改变阳离子取代基的效果的比较研究。

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