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首页> 外文期刊>Analytical chemistry >Improved Detection Limits and Unbiased Selectivity Coefficients Obtained by Using Ion-Exchange Resins in the Inner Reference Solution of Ion-Selective Polymeric Membrane Electrodes
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Improved Detection Limits and Unbiased Selectivity Coefficients Obtained by Using Ion-Exchange Resins in the Inner Reference Solution of Ion-Selective Polymeric Membrane Electrodes

机译:在离子选择性聚合物膜电极的内部参比溶液中使用离子交换树脂获得的改进的检测限和无偏的选择性系数

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摘要

By using a high concentration of an interfering ion and a low one of the primary ion in the inner reference solution of polymeric membrane ion-selective electrodes (ISEs), the lower detection limit may be improved and unbiased thermodynamic selectivity coefficients may be obtained. To this purpose, a cation-exchange resin is used here to keep the low concentration of the primary cation constant. Different compositions of the internal solution are required for obtaining optimal lower detection limits and unbiased selectivity coefficients. All ISEs studied here, i.e., for K~(+), Ca~(2+), and (NH_(4))~(+), based on valinomycin, ETH 5234, and nonactin/monactin, respectively, show improved lower detection limits in the range of 10~(-7.6) ((NH_(4))~(+)) to 10~(-8.8) M (Ca~(2+)). Nernstian responses and, therefore, unbiased selectivity coefficients are obtained with the K~(+)ISE for the discriminated ions, Na~(+), Mg~(2+), and Ca~(2+).
机译:通过在聚合物膜离子选择电极(ISE)的内部参考溶液中使用高浓度的干扰离子和较低的一次离子,可以提高检测下限,并获得无偏的热力学选择性系数。为此目的,此处使用阳离子交换树脂以保持低浓度的初级阳离子恒定。为了获得最佳的较低检测限和无偏的选择性系数,需要内部溶液的不同组成。此处研究的所有ISE(分别针对缬氨霉素,ETH 5234和nonactin / monactin的K〜(+),Ca〜(2+)和(NH_(4))〜(+)均显示出更低的改善检测极限范围为10〜(-7.6)((NH_(4))〜(+))至10〜(-8.8)M(Ca〜(2+))。用能分辨离子,Na〜(+),Mg〜(2+)和Ca〜(2+)的K〜(+)ISE获得能斯特响应,从而获得无偏的选择性系数。

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