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Electrocatalytic oxidation of sulfur containing amino acids at renewable Ni-powder doped carbon ceramic electrode: Application to amperometric detection L-cystine, L-cysteine and L-methionine

机译:可再生镍粉掺杂碳陶瓷电极上含硫氨基酸的电催化氧化:在安培法检测L-胱氨酸,L-半胱氨酸和L-蛋氨酸中的应用

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摘要

Cyclic voltammograms of the resulting modified electrode show stable and a well defined redox couple due to Ni(II)/Ni(III) system with surface confined characteristics. The modified electrode shows excellent catalytic activity toward L-cystine, L-cysteine and L-methionine oxidation at reduced overpotential in alkaline solutions. In addition the antifouling properties at the modified electrode toward the above analytes and their oxidation products increases the reproducibility of results. L-cystine, L-cysteine and L-methionine were determined chronoamperometricaly at the surface of this modified electrode at pH range 9-13. Under the optimized conditions the calibration curves are linear in the concentration range 1-450 mu M, 2-90 mu M and 0.2-75 mu M for L-cystine, L-methionine and L-cysteine determination, respectively. The detection limit and sensitivity were 0.64 mu M, 3.8 nA/ mu M for L-cystine, 2 mu M, 5.6 nA/ mu M for L-methionine and 0.2 mu M and 8.1 nA/mu M for L-cysteine. The advantageous of this modified electrode is high response, good stability and reproducibility, excellent catalytic activity for oxidation inert molecules at reduced overpotential and possibility of regeneration of the electrode surface by potential cycling for 5 minutes. Furthermore, the modified electrode has been prepared without using specific reagents. This sensor can be used as an amperometric detector for disulfides detection in chromatographic or flow systems.
机译:由于具有表面限制特性的Ni(II)/ Ni(III)系统,所得修饰电极的循环伏安图显示稳定且定义明确的氧化还原对。改性电极在碱性溶液中降低的过电势下对L-半胱氨酸,L-半胱氨酸和L-蛋氨酸氧化具有优异的催化活性。另外,在修饰电极上对上述分析物及其氧化产物的防污性能提高了结果的可重复性。 L-胱氨酸,L-半胱氨酸和L-蛋氨酸在该修饰电极的表面在pH范围9-13时按计时电流法测定。在优化的条件下,对于L-胱氨酸,L-蛋氨酸和L-半胱氨酸的测定,校准曲线分别在1-450μM,2-90μM和0.2-75μM的浓度范围内呈线性。检测极限和灵敏度分别为:L-半胱氨酸为0.64μM,3.8 nA /μM,L-蛋氨酸为2μM,5.6 nA /μM,L-半胱氨酸为0.2μM和8.1 nA /μM。这种修饰电极的优点是响应速度高,稳定性和重现性好,在降低的过电势下对氧化惰性分子具有出色的催化活性以及通过电势循环5分钟使电极表面再生的可能性。此外,已经在不使用特定试剂的情况下制备了改性电极。该传感器可用作色谱或流量系统中二硫化物检测的安培检测器。

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