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Salt matrix voltammetry: Microphase redox processes at ammonium chloride | gold | gas triple phase boundaries

机译:盐基质伏安法:氯化铵中的微相氧化还原工艺|黄金|气体三相边界

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摘要

Electrochemical processes at the electrode | ammonium chloride salt crystal | gas triple phase boundary are detected under the condition that (i) microscopic contact points of salt crystals to a suitable working electrode are formed and (ii) the relative humidity level is adjusted to allow sufficient surface ion conduction in a thin water film within the salt matrix. In this preliminary report, redox systems such as Fe(CN)_6~(3-/4-), hydroquinone/benzoquinone, decamethylferrocene~(+/0), ferrocenedimethanol~(+/0), and Cu~(2+/+/0) are investigated embedded into an ammonium chloride salt matrix (by mechanical grinding) and then brought into contact with a macroscopic gold disc electrode. Voltammetric current responses are demonstrated consistent with the processes in the microphase formed at the salt | electrode | gas triple phase boundary. Copper metal electro-deposition is observed. Direct electrochemistry of dioxygen from the gas phase at the salt crystal | gold electrode contact is observed and gas sensing applications are proposed.
机译:电极上的电化学过程|氯化铵盐晶体|在以下条件下检测气态三相边界:(i)形成盐晶体与合适的工作电极的微观接触点;(ii)调节相对湿度,以使盐内的薄水膜中有足够的表面离子传导能力矩阵。在此初步报告中,氧化还原系统如Fe(CN)_6〜(3- / 4-),氢醌/苯醌,十甲基二茂铁〜(+ / 0),二茂铁二甲醇〜(+ / 0)和Cu〜(2 + / (+ / 0)被研究嵌入氯化铵盐基质(通过机械研磨),然后使其与宏观金盘电极接触。伏安电流响应被证明与盐形成微相的过程一致。电极|气体三相边界。观察到铜金属电沉积。气相中盐晶体中的双氧直接电化学观察到金电极接触并提出了气体传感应用。

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