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Chronopotentiometric Carbonate Detection with All-Solid-State Ionophore-Based Electrodes

机译:基于全固态离子载体的电极进行计时电位碳酸盐检测

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We present here for the first time an all-solid-state chronopotentiometric ion sensing system based on selective ionophores, specifically for the carbonate anion. A chronopotentiometric readout is attractive because it may allow one to obtain complementary information on the sample speciation compared to zero-current potentiometry and detect the sum of labile carbonate species instead of only ion activity. Ferrocene covalently attached to the PVC polymeric chain acts as an ion-to-electron transducer and provides the driving force to initiate the sensing process at the membrane--sample interface. The incorporation of a selective ionophore for carbonate allows one to determine this anion in a background electrolyte. Various inner electrolyte and all-solid-state-membrane configurations are explored, and localized carbonate depletion is only observed for systems that do not contain ion-exchanger additives. The square root of the transition times extracted from the inflection point of the chronopotentiograms as a function of carbonate specie concentration follows a linear relationship. The observed linear range is 0.03-0.35 mM in a pH range of 9.50-10.05. By applying the Sand equation, the diffusion coefficient of carbonate is calculated as (9.03 ± 0.91) 10~(-6) cm~2 s~(-1), which corresponds to the established value. The reproducibility of assessed carbonate is better than 1%. Additionally, carbonate is monitored during titrimetric analysis as a precursor to an in situ environmental determination. Based on these results, Fc-PVC membranes doped with ionophores may form the basis of a new family of passive/active all-solid-state ion selective electrodes interrogated by a current pulse.
机译:我们在此首次展示基于选择性离子载体(特别是碳酸根阴离子)的全固态计时电位离子传感系统。计时电位计的读数很有吸引力,因为与零电流电位计相比,它可以使人们获得有关样品形态的补充信息,并检测不稳定的碳酸盐种类的总和,而不是仅检测离子活性。共价连接到PVC聚合物链上的二茂铁充当离子电子转换器,并提供驱动力以启动膜-样品界面的传感过程。碳酸根的选择性离子载体的引入使得人们可以确定背景电解质中的该阴离子。探索了各种内部电解质和全固态膜配置,并且仅在不包含离子交换添加剂的系统中观察到局部碳酸盐消耗。从计时电位图的拐点提取的过渡时间的平方根与碳酸盐种类的浓度成线性关系。在9.50-10.05的pH范围内观察到的线性范围为0.03-0.35 mM。通过使用Sand方程,碳酸盐的扩散系数计算为(9.03±0.91)10〜(-6)cm〜2 s〜(-1),与设定值相对应。评估碳酸盐的重现性优于1%。另外,在滴定分析过程中监测碳酸盐作为原位环境测定的前身。基于这些结果,掺杂有离子载体的Fc-PVC膜可能构成新的被动/主动全固态离子选择性电极家族的基础,该电极通过电流脉冲进行询问。

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