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CYCLIC VOLTAMMETRY OF S-SULFOCYSTEINE AT A GOLD PLUS MERCURY AMALGAM ELECTRODE AND APPLICATION TO DUAL ELECTRODE ELECTROCHEMICAL DETECTION

机译:金-汞汞合金电极上S-磺基半胱氨酸的循环伏安法及其在双电极电化学检测中的应用

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摘要

The dual gold + mercury (Au + Hg) amalgam electrode was found to be an effective detector for S-sulfocysteine (SSC). Using flow injection analysis, a 20 pmol mass detection limit was achieved using a 20 mu l injection volume. Cystine and SSC were shown to behave quite differently in this detection system. The signal from cystine displayed a dependence on flow rate reflective of simple mass transfer, while the signal from SSC was more sensitive to mobile phase flow rate. The cystine signal was insensitive to pH, while SSC's signal depended significantly on pH. The SSC reduction reaction at the upstream Au + Hg electrode was determined by cyclic voltammetry to be RSSO3- + 2H(+) + 2e(-) --> RSH + HSO3-. The signal monitored at the downstream electrode was attributed mainly to the oxidation of Hg to Hg cysteinate below pH4. Both cysteine and bisulfite contributed to the detection signal above pH 4.5. The optimum pH for the detection of SSC was approximately 5.2. (C) 1997 Elsevier Science S.A. [References: 22]
机译:发现金+汞(Au + Hg)汞合金双电极是S-硫代半胱氨酸(SSC)的有效检测器。使用流动进样分析,使用20μl的进样量可达到20 pmol的质量检测极限。胱氨酸和SSC在该检测系统中表现出完全不同的行为。来自胱氨酸的信号显示出对流速的依赖性,这反映了简单的质量传递,而来自SSC的信号对流动相流速更敏感。胱氨酸信号对pH不敏感,而SSC的信号明显取决于pH。通过循环伏安法测定在上游Au + Hg电极处的SSC还原反应为RSSO3- + 2H(+)+ 2e(-)-> RSH + HSO3-。在下游电极处监测到的信号主要归因于Hg在pH4以下氧化为半胱氨酸Hg。半胱氨酸和亚硫酸氢盐均对pH 4.5以上的检测信号有贡献。检测SSC的最佳pH约为5.2。 (C)1997 Elsevier Science S.A. [参考:22]

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