首页> 外文期刊>Electrochimica Acta >Study of the potentiometric properties of spinel-type manganese oxide doped with gallium and anions Ga0.02Mn1.98O3.98X0.02 (X = S2- and F-) as selective sensor for lithium ion
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Study of the potentiometric properties of spinel-type manganese oxide doped with gallium and anions Ga0.02Mn1.98O3.98X0.02 (X = S2- and F-) as selective sensor for lithium ion

机译:掺杂有镓和阴离子Ga0.02Mn1.98O3.98X0.02(X = S2-和F-)作为锂离子选择性传感器的尖晶石型氧化锰的电位特性研究

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This paper describes the development of a selective lithium ion sensor based on spinel-type manganese oxide doped with gallium and anions (Ga0.02Mn1.98O3.98X0.02, where X = S2- and F-). Investigation was made of the influence of cationic and/or anionic doping agents on the potentiometric response of the sensor. Experimental parameters evaluated included the effect of the lithium concentration on activation of the sensor by cyclic voltammetry, the pH of the electrolyte solution, and the selectivity towards Li+ compared to other alkali and alkaline-earth metal ions. There was an important influence of the unit cell size of the material on the linear range, detection limit, and selectivity of the sensor. Reduction in the size of the tunnel for insertion of the lithium in the porous structure of the oxide directly affected the potentiometric performance of the electrode. Sensor performance increased in the order: Ga0.02Mn1.98O4 > Ga0.02Mn1.98O3.98S0.02 > Ga0.02Mn1.98O3.98F0.02. The observed super-Nernstian response could be explained by a mixed potential arising from two equilibria (redox and ion exchange) in the spinel-type manganese oxide. Sensitivity and the influence of pH on the electrode response were directly related to the doping agents present in the oxide structure. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种基于掺杂有镓和阴离子的尖晶石型锰氧化物(Ga0.02Mn1.98O3.98X0.02,其中X = S2-和F-)的选择性锂离子传感器的开发。研究了阳离子和/或阴离子掺杂剂对传感器电位响应的影响。与其他碱金属和碱土金属离子相比,评估的实验参数包括锂浓度对通过循环伏安法激活传感器的影响,电解质溶液的pH值以及对Li +的选择性。材料的晶胞尺寸对线性范围,检测极限和传感器的选择性有重要影响。用于将锂插入氧化物的多孔结构中的隧道的尺寸的减小直接影响电极的电位测量性能。传感器性能依次提高:Ga0.02Mn1.98O4> Ga0.02Mn1.98O3.98S0.02> Ga0.02Mn1.98O3.98F0.02。尖晶石型氧化锰中的两个平衡(氧化还原和离子交换)产生的混合电势可以解释观察到的超能斯特响应。 pH值对电极响应的敏感性和影响与氧化物结构中存在的掺杂剂直接相关。 (C)2015 Elsevier Ltd.保留所有权利。

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