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首页> 外文期刊>Chromatographia >Ion Chromatography with Post-column Reaction and Serial Conductivity and Spectrophotometric Detection Method Development for Quantification of Transition Metal Dissolution in Lithium Ion Battery Electrolytes
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Ion Chromatography with Post-column Reaction and Serial Conductivity and Spectrophotometric Detection Method Development for Quantification of Transition Metal Dissolution in Lithium Ion Battery Electrolytes

机译:具有后柱后反应和串联电导率的离子色谱和分光光度测量检测方法开发,用于定量锂离子电池电解质中的过渡金属溶解

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We present a method for the separation and determination of transition metals in electrolytes based on ion chromatography (IC) with post-column reaction (PCR) and serial conductivity and spectrophotometric detection. Three IC columns [Metrosep C4—250/4.0 (column A), Metrosep C6—250/4.0 (column B), and Nucleosil 100-5SA—250/4.6 (column C)] with different capacities, and stationary phases were used and compared with each other for method development. All spectrophotometric measurements were carried out with 4-(2-pyridylazo)resorcinol (PAR) as PCR reagent at a wavelength of 500?nm. To characterize the precision of the separation, the selectivity for the analysis of transition metals (nickel, cobalt, copper, and manganese) in the presence of large amounts of lithium and the resolution of the peaks were determined and compared with one another. Furthermore, the limits of detection (LOD) and quantification (LOQ) were determined for the transition metals. The LODs and LOQs determined by column?C were as follows: cobalt (LOD/LOQ): 9.4?μg?L_(?1)/31.3?μg?L_(?1), manganese (LOD/LOQ): 7.0?μg?L_(?1)/23.5?μg?L_(?1), and nickel (LOD/LOQ): 6.3?μg?L_(?1)/21.1?μg?L_(?1). Finally, the concentration of transition metal dissolution of the cathode material Li~(1)Ni~(1/3)Co~(1/3)Mn~(1/3)O~(2)(NCM) was investigated for different charge cut-off voltages by the developed IC method.
机译:我们介绍了一种基于离子色谱(IC)的电解质中的电解质中过渡金属的分离和测定方法,以及柱状反应和串联电导率和分光光度检测。使用具有不同容量的三个IC柱[MetRosep C4-250 / 4.0(柱A),MetRosep C6-250 / 4.0(柱B)和核苷100-5SA-250 / 4.6(柱C)]和固定相相互相互比较方法开发。所有分光光度测量均用4-(2-吡啶基)间苯甲醇(Par)作为PCR试剂进行,以500〜Nm的PCR试剂进行。为了表征分离的精度,测定在大量锂存在下的过渡金属(镍,钴,铜和锰)的选择性,并确定峰的分辨率。此外,确定用于过渡金属的检测限(LOD)和定量(LOQ)。由柱子测定的LOD和LOQ如下:钴(LOD / LOQ):9.4?μg?L _(α1)/31.3?μg?l _(?1),锰(LOD / LOQ):7.0?μg ?L _(α1)/23.5?μg?l_(α1)和镍(LOD / LOQ):6.3?μg≤1_(?1)/21.1?_(?1)。最后,对阴极材料的过渡金属溶解浓度Li〜(1)Ni〜(1/3)CO〜(1/3)Mn〜(1/3)O〜(2)(NCM)进行了不同通过开发的IC方法充电截止电压。

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