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Potentiometric Response of Solid-State Sensors Based on Ferric Phosphate for Iron(III) Determination

机译:基于铁(iii)测定的固态传感器的电位响应

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摘要

A novel ion-selective electrode with membranes based on iron(III) phosphate and silver sulfide integrated into a completely new electrode body design has been developed for the determination of iron(III) cations. The best response characteristics with linear potential change were found in the iron(III) concentration range from 3.97 × 10−5 to 10−2 mol L−1. The detection limit was found to be 2.41 × 10−5 mol L−1 with a slope of −20.53 ± 0.63 and regression coefficient of 0.9925, while the quantification limit was 3.97 × 10−5 M. The potential change per concentration decade ranged from −13.59 ± 0.54 to −20.53 ± 1.56 for Electrode Body 1 (EB1) and from −17.28 ± 1.04 to −24 ± 1.87 for Electrode Body 2 (EB2), which is presented for the first time in this work. The prepared electrode has a long lifetime and the ability to detect changes in the concentration of iron cations within 20 s. Membrane M1 showed high recoveries in the determination of iron cations in iron(III) standard solutions (98.2–101.2%) as well as in two different pharmaceuticals (98.6–106.5%). This proves that this type of sensor is applicable in the determination of ferric cations in unknown samples, and the fact that all sensor parts are completely manufactured in our laboratory proves the simplicity of the method.
机译:已经开发了一种新的离子选择性电极,其具有基于铁(III)磷酸盐和含银硫化银集成到完全新的电极体设计中的用于确定铁(III)阳离子。在铁(III)浓度范围为3.97×10-5至10-2mol L-1中,发现具有线性电位变化的最佳响应特性。检测限为2.41×10-5摩尔L-1,斜率为-20.53±0.63,回归系数为0.9925,而量化极限为3.97×10-5米。每浓度十年的潜在变化范围电极体1(EB1)的-13.59±0.54至-20.53±1.56,电极体2(EB2)的-17.28±1.87至​​-24±1.87,这是在这项工作中首次介绍的。制备的电极具有较长的寿命和检测20秒内的铁阳离子浓度变化的能力。膜M1显示了铁(III)标准溶液中的铁阳离子(98.2-101.2%)以及两种不同的药物(98.6-106.5%)中的高回收率。这证明了这种类型的传感器适用于确定未知样品中的阳离子,以及所有传感器部件在我们的实验室中完全制造的事实证明了该方法的简单性。

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