首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A ditopic calix[4]pyrrole amide derivative: highlighting the importance of fundamental studies and the use of NaPh4B as additive in the design and applications of mercury(II) ion selective electrodes
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A ditopic calix[4]pyrrole amide derivative: highlighting the importance of fundamental studies and the use of NaPh4B as additive in the design and applications of mercury(II) ion selective electrodes

机译:对位杯[4]吡咯酰胺衍生物:强调基础研究的重要性以及使用NaPh4B作为添加剂在汞(II)离子选择性电极的设计和应用中的重要性

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The use of calixpyrroles as cation monitoring systems is very limited. The importance of fundamental studies for providing the basis for the selection of an appropriate ionophore for use in the design of ion selective electrodes cannot be overemphasised. Thus a new ditopic receptor, namely meso-tetramethyl-tetrakis-(4N,N-diethylacetamide) phenoxymethyl] calix[4] pyrrole (CPA), bearing cation and anion recognition sites has been synthesized and characterized using NMR measurements in acetonitrile. This new receptor interacts with Ca(II), Sr(II), Ba(II), Pb(II) and Cd(II) perchlorate salts and Hg(II) (nitrate as counter-ion). Among the cations tested, 1 : 1: complexes were found between CPA and the above mentioned cations except Hg(II) for which a 1 : 2 (ligand : metal cation) complex is found. These fundamental studies provided the basis for the design of a Hg(II) ion selective electrode (ISE). A detailed investigation on possible interactions between the analyte and the individual components of the membrane in solution as well as in membranes prepared in the absence of the receptor, revealed that NaPh4B, an additive frequently used in the preparation of mercury ion selective membranes, interacts with Hg(II). The implications of these findings on previously reported (Hg(II) ISE) are discussed. The optimum working conditions of the new electrode on its potentiometric response were established. Selectivity coefficients of Hg(II) relative to other cations were calculated. The advantages of this electrode relative to others reported in the literature are discussed. Analytical applications include its use as an indicator electrode as well as for the quantitative determination of this cation in an amalgam.
机译:杯形吡咯作为阳离子监测系统的使用非常有限。不能过分强调基础研究为选择合适的离子载体以用于离子选择性电极设计提供基础的重要性。因此,已经合成了一种新的二位受体,即具有阳离子和阴离子识别位点的介孔四甲基-四-(4N,N-二乙基乙酰胺)苯氧基甲基]杯[4]吡咯(CPA),并使用NMR在乙腈中进行了表征。这种新的受体与Ca(II),Sr(II),Ba(II),Pb(II)和Cd(II)高氯酸盐和Hg(II)(硝酸根作为抗衡离子)相互作用。在测试的阳离子中,发现CPA与上述阳离子之间存在1:1:1的配合物,但Hg(II)的配合物为1:2(配体:金属阳离子)。这些基础研究为Hg(II)离子选择电极(ISE)的设计提供了基础。对溶液中以及在没有受体的情况下制备的膜中分析物与膜各个成分之间可能相互作用的详细研究表明,NaPh4B是一种经常用于制备汞离子选择性膜的添加剂,它与汞(II)。讨论了这些发现对先前报道的(Hg(II)ISE)的影响。建立了新电极在其电位响应上的最佳工作条件。计算了Hg(II)相对于其他阳离子的选择性系数。讨论了该电极相对于文献中报道的其他电极的优点。分析应用包括将其用作指示电极,以及用于定量测定汞齐中的阳离子。

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