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MOF-derived electrochemical catalyst Cu–N/C for the enhancement of amperometric oxygen detection

机译:MOF-derived电化学催化剂Cu-N / C增强氧测量电流的检测

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Electrochemical sensors using ionic liquids as electrolytes for oxygen detection are now getting more and more attention. Recently, an ionic liquid combined with an electrochemically active catalyst system has become popular for boosting the sensing performance of oxygen sensors. In this work, the imidazolyl-based ionic liquid 1-butyl-2,3-dimethylimidazole bis((trifluoromethyl)sulfonyl)imide [Bmmim][TFSI] is first prepared by a facile two-step method. Subsequently, a transition metal and N-codoped porous carbon oxygen reduction electrochemical catalyst Cu–N/C is synthesized by calcining the Cu-doped ZIF-8 precursor and then blending it in different ratios with the ionic liquid [Bmmim][TFSI] as composite electrolytes for oxygen detection. The composite electrolyte Cu–N/C/[Bmmim][TFSI] exhibits increased responses in cyclic voltammetry (CV) and chronoamperometry (CA) relative to that of the pure ionic liquid. Furthermore, the CV and CA data show that 6% Cu–N/C/[Bmmim][TFSI] has the optimum oxygen sensing response with an enhanced reduction peak current, a sensitivity of 0.1678 μA/[% O2] and a good linear fitting coefficient of 0.9991. In conclusion, the results confirm the success of using Cu–N/C as an electrochemical catalyst composed of the Cu–N/C/[Bmmim][TFSI] electrolyte for improving the responsivity, stability and sensitivity towards a wide range of oxygen concentrations.
机译:使用离子液体作为电化学传感器电解质氧检测现在越来越多的关注。液体上加上电化学催化剂体系已经成为受欢迎的推动氧气传感器的传感性能。这个工作,imidazolyl-based离子液体1-butyl-2,3-dimethylimidazolebis ((trifluoromethyl)磺酰基)酰亚胺[Bmmim] [TFSI]首先是由一个简单两步方法。随后,一个过渡金属和N-codoped多孔碳氧还原电化学Cu-N / C是由煅烧合成催化剂Cu-doped ZIF-8前体,然后混合不同的比率与离子液体[Bmmim] [TFSI)作为复合电解质氧气检测。Cu-N / C / [Bmmim] [TFSI]展品反应增加在循环伏安法(CV)和计时电流法(CA)相对于纯离子液体的。此外,简历和CA的数据显示,6%Cu-N / C / [Bmmim] [TFSI]的最佳氧气传感响应增强的还原峰目前,灵敏度为0.1678μa / (% O2)和一个良好的线性拟合系数为0.9991。结论,结果证实的成功使用Cu-N / C作为电化学催化剂由Cu-N / C / [Bmmim] [TFSI]电解质为提高响应率、稳定和对各种氧敏感性浓度。

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