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Design and properties of a flow-injection analysis cell using potassium-selective ionsensitive field-effect transistors as detection elements

机译:以钾选择性离子敏感场效应晶体管为检测元件的流动注射分析池的设计和性能

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摘要

The combination of flow-injection analysis (FIA) and chemically modified ion-sensitive field-effect transistors (CHEMFETs) is described. In a wall-jet cell, two identical potassium-selective CHEMFETs were used for a differential measurement using a platinum (pseudo-)reference electrode. Silicone-rubber membrane materials, chemically bound to the SiO2 gate oxide, were used with valinomycin as the ionophore. The optimized FIA system showed a linear response of 56 mV per decade for potassium concentrations above 5 × 10−5 M. Preliminary results of potassium determinations in human serum and urine samples are presented.
机译:描述了流注入分析(FIA)和化学修饰的离子敏感场效应晶体管(CHEMFET)的组合。在壁喷式电池中,两个相同的钾选择性CHEMFET用于使用铂(伪)参比电极进行差分测量。化学结合到SiO2栅极氧化物上的硅橡胶膜材料与缬氨霉素一起用作离子载体。优化的FIA系统显示,钾浓度高于5×10-5 M时,线性响应为每十年56 mV。提供了人类血清和尿液中钾含量测定的初步结果。

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