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Colorimetric sensing of anions in water using ratiometric indicator-displacement assay

机译:Colorimetric sensing of anions in water using ratiometric indicator-displacement assay

摘要

The analysis of anions in water presents a difficult challenge due to their low charge-to-radius ratio, and the ability to discriminate among similar anions often remains problematic. The use of a 3 x 6 ratiometric indicator-displacement assay (RIDA) array for the colorimetric detection and identification of ten anions in water is reported. The sensor array consists of different combinations of colorimetric indicators and metal cations. The colorimetric indicators chelate with metal cations, forming the color changes. Upon the addition of anions, anions compete with the indicator ligands according to solubility product constants (K-sp). The indicator-metal chelate compound changes color back dramatically when the competition of anions wins. The color changes of the RIDA array were used as a digital representation of the array response and analyzed with standard statistical methods, including principal component analysis and hierarchical clustering analysis. No confusion or errors in classification by hierarchical clustering analysis were observed in 44 trials. The limit of detection was calculated approximately, and most limits of detections of anions are well below mu M level using our RIDA array. The pH effect, temperature influence, interfering anions were also investigated, and the RIDA array shows the feasibility of real sample testing. (C) 2012 Elsevier B.V. All rights reserved.
机译:水中阴离子的分析由于其低的电荷-半径比而面临着艰巨的挑战,而区分相似阴离子的能力通常仍然存在问题。据报道,使用3 x 6比例指示剂位移测定(RIDA)阵列进行比色检测和鉴定水中的十种阴离子。传感器阵列由比色指示剂和金属阳离子的不同组合组成。比色指示剂与金属阳离子螯合,形成颜色变化。添加阴离子后,阴离子会根据溶解度乘积常数(K-sp)与指示剂配体竞争。当阴离子竞争获胜时,指示剂金属螯合物会显着改变颜色。 RIDA阵列的颜色变化用作阵列响应的数字表示,并通过标准统计方法进行分析,包括主成分分析和层次聚类分析。在44项试验中未观察到通过分层聚类分析进行分类的混淆或错误。使用我们的RIDA阵列,可以近似计算出检测限,并且大多数阴离子检测限都远低于μM水平。还研究了pH效应,温度影响,阴离子干扰,RIDA阵列显示了实际样品测试的可行性。 (C)2012 Elsevier B.V.保留所有权利。

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