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Potentiometric measurement of state-of-charge of lead-acid battery by using a bridged ferrocene surface modified electrode

机译:桥式二茂铁表面改性电极用于铅酸蓄电池充电状态的电位测量

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Alkanethiol bridged, 3-(11-mercaptoundecyl)[3](1,1') ferrocenophane and 3-(11-mercaptoundecyl)[5](1,1') ferrocenophane were synthesized and their electrochemical behaviour in aqueous sulphuric acid electrolyte investigated. It is found that these compounds, chemisorbed on a gold substrate, undergo reversible electrochemical oxidation/reduction. The anodic and cathodic peak potentials are independent of the acid concentration in the range 1.0 X 10~(-2) to 1.0 X 10~(-7) M but change linearly with the acid concentration in the range 1-5 M. While this behaviour is similar to that for other ferrocenes like [3](1,1') ferrocenophane and [5](1,1') ferrocenophane the materials are much more chemically stable in aqueous sulphuric acid media. The presence of thiol group enhances the retainability of the bridged ferrocene while maintaining its chemical stability. The possibility of applying this observation for determining state-of-charge of lead-acid battery is discussed.
机译:合成烷氧基桥接的3-(11-巯基癸基)[3](1,1')二茂铁en烷和3-(11-巯基癸基)[5](1,1')二茂铁oph烷并研究了它们在硫酸水溶液中的电化学行为。发现这些化学吸附在金基底上的化合物经历可逆的电化学氧化/还原。阳极和阴极峰电位与酸浓度在1.0 X 10〜(-2)至1.0 X 10〜(-7)M范围内无关,但随酸浓度在1-5 M范围内呈线性变化。其行为与其他二茂铁类似,例如[3](1,1')二茂铁oph烷和[5](1,1')二茂铁oph烷,该材料在硫酸水溶液中的化学稳定性更高。巯基的存在增强了桥联二茂铁的保留能力,同时保持了其化学稳定性。讨论了将该观察结果应用于确定铅酸蓄电池充电状态的可能性。

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