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Ion selective polymeric membranes as chemically selective coulometric electrodes.

机译:离子选择性聚合物膜作为化学选择性库仑电极。

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Potentiometric and optical ion sensors use highly selective lipophilic ionophores as a special additive in a plasticized PVC membrane have been thoroughly studied for application as a coulometric electrode. This dissertation presents theory, experimental evidence and analysis of membranes optimized to suit the needs of a coulometric electrode. These electrodes function on the basis of ion transport from the viscous polymeric phase into the sample by means of current control. Selective coulometric release of non-electroactive ionic reagent is carried out using an ion-selective polymeric membrane. This is an elegant method for establishing calibration-free titration techniques. The ion selective membrane has been applied as a coulometric electrode for several well-known and useful complexometric and precipitation titrations. A coulometric technique involving constant current pulses and ramping current pulses were utilized with either potentiometric or pulse galvanostatic detection in conjunction. A small volume of 1mL was used as a sample. The inner membrane phase boundary is polarizable unlike the metal-based coulometric electrodes. Experiments were carried out with PVC membranes containing a lipophilic salt in a high concentration of 10wt%. Chronopotentiometry has been utilized to characterize the ion selective membranes for their polarizability under constant current coulometry. Anodic electrolysis current across the membrane results in coulometric release of cations. The high selectivity as a result of lipophilic ionophore in the membrane results in good coulometric efficiency, even in the presence of interfering ions in the background.; This process completely obeys Faraday's law until before the region of concentration polarization. This polarization behaviour depends on the nature and the activity of sample anions and cations and on the magnitude of current applied with the duration of applications taken into consideration. Knowledge of this polarization behaviour is essential for design and applications of coulometric electrodes. A simple model is put forward based on the chronopotentiometric experiments. This coulometric technique is utilized to release calcium from the calcium selective membrane electrode to titrate EDTA in the complexometric direct and back titrations. This is especially useful in the estimation of nickel concentration.; The coulometric protamine selective membrane has been utilized to release protamine and titrated against anticoagulant heparin in a clinically relevant concentration range as an example of coulometric non-electroactive polyion release The pulse galvanostatic PVC/DOS based membranes were also developed for whole blood protamine sensing in view of this matrix being better for in vivo applications.
机译:电位和光学离子传感器使用高度选择性的亲脂性离子载体作为增塑PVC膜中的特殊添加剂,已被彻底研究用作电量电极。本文介绍了理论,实验证据和对膜进行了优化以适合库仑电极的需要的分析。这些电极的作用是通过电流控制,将离子从粘性聚合物相转移到样品中。非电活性离子试剂的选择性库仑法释放是使用离子选择性聚合物膜进行的。这是建立免校准滴定技术的一种优雅方法。离子选择性膜已被用作电量分析电极,用于几种众所周知的有用的络合滴定法和沉淀滴定法。结合恒电位脉冲和斜电流脉冲的库仑技术与电位计或脉冲恒电流检测结合使用。少量1mL用作样品。与基于金属的库仑电极不同,内膜相界是可极化的。用含有浓度为10wt%的亲脂盐的PVC膜进行实验。计时电位法已被用于表征离子选择膜在恒流库仑法下的极化能力。跨膜的阳极电解电流会导致电量的库仑释放。亲脂性离子载体在膜中的高选择性即使在背景中存在干扰离子的情况下也具有良好的库仑效率。该过程完全服从法拉第定律,直到浓度极化区域之前。这种极化行为取决于样品阴离子和阳离子的性质和活性,以及​​在考虑施加时间的情况下施加的电流大小。对这种极化行为的了解对于库仑电极的设计和应用至关重要。基于计时电位实验,提出了一个简单的模型。该电量分析技术可用于从钙选择性膜电极释放钙,从而在络合直接滴定法和反滴定法中滴定EDTA。这在估计镍浓度时特别有用。库仑鱼精蛋白选择性膜已被用于释放鱼精蛋白,并在临床上相关的浓度范围内针对抗凝性肝素进行滴定,作为库仑非电活性聚离子释放的实例。基于全电流鱼精蛋白感测,还开发了基于脉冲恒电流的基于PVC / DOS的膜这种基质的更好的体内应用。

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