首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Anion interaction with ferrocene-functionalised cyclic and open-chain polyaza and aza-oxa cycloalkanes
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Anion interaction with ferrocene-functionalised cyclic and open-chain polyaza and aza-oxa cycloalkanes

机译:阴离子与二茂铁官能化的环状和开链聚氮杂和氮杂-氧杂环烷烃的相互作用

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A family of ferrocene-functionalised receptors of different topologies have been used as receptors for anions. The compounds have been designed to contain both amine nitrogen and ether oxygen atoms and comprises from monoaza to pentaaza derivatives both open-chain (L-1, L-2, L-3) or cyclic (L-4, L-5) and having from one to five ferrocenyl groups. Solution studies directed to determine the protonation constants of L-1, L-2 and L-3 have been carried out in water (0.1 mol dm(-3) KNO3, 25 degrees C) and those of L-4 and L-5 in 1,4-dioxane-water (70:30 v/v, 0.1 mol dm(-3) KNO3, 25 degrees C). The protonation behaviour of the receptors can be explained taking into account electrostatic considerations. Speciation studies in the presence of phosphate have been carried out in water for L-1, L-2 and L-3 and in dioxane-water for L-4 and L-5. Speciation studies have also been performed in the presence of ATP with L-1, L-2 and L-3 in water. Selectivity of a mixture of receptors against a certain anion is discussed in terms of ternary diagrams. The shift of the redox potential of the ferrocenyl groups as a function of the pH has been studied. The difference between the oxidation potentials at basic and acidic pH has been determined experimentally and is compared with that theoretically predicted using an electrostatic model previously reported. The electrochemical shift in the presence of ATP and phosphate has been measured in water for L-1, L-2 and L-3 and in the presence of phosphate and sulfate in 1,4-dioxane-water for L-4 and L-5 as a function of the pH. The electrochemical response found against those anions is quite poor with maximum cathodic shifts of ca. 30-40 mV. The electrochemical response induced by HSO4- and H2PO4- has also been studied in acetonitrile solutions where a large cathodic shift for H2PO4- up to ca. 200 mV was found. [References: 52]
机译:具有不同拓扑结构的二茂铁官能化的受体家族已被用作阴离子的受体。这些化合物被设计为既包含胺氮原子又包含醚氧原子,并且包含从单氮杂到五氮杂的衍生物,包括开链(L-1,L-2,L-3)或环状(L-4,L-5)和具有一到五个二茂铁基。在水中(0.1 mol dm(-3)KNO3,25摄氏度)和L-4和L-的质子化常数进行了溶液测定,以确定L-1,L-2和L-3的质子化常数。 5在1,4-二恶烷水中(70:30 v / v,0.1 mol dm(-3)KNO3,25摄氏度)。可以考虑静电因素来解释受体的质子化行为。在水中,对于L-1,L-2和L-3,在磷酸盐的存在下进行了形态研究,对于L-4和L-5,在二恶烷-水中进行了形态研究。在水中还有ATP与L-1,L-2和L-3的情况下也进行了物种研究。根据三元图讨论了受体混合物对某种阴离子的选择性。已经研究了二茂铁基团的氧化还原电势随pH的变化。已通过实验确定了碱性和酸性pH值下氧化电位之间的差异,并将其与使用先前报道的静电模型从理论上预测的相比较。对于L-1,L-2和L-3,在水中测量了ATP和磷酸盐存在下的电化学位移;对于L-4和L-,在1,4-二恶烷水溶液中测量了磷酸盐和硫酸盐存在下的电化学位移。 5作为pH的函数。对这些阴离子的电化学响应非常差,最大阴极位移约为。 30-40毫伏。还已经在乙腈溶液中研究了由HSO4-和H2PO4-引起的电化学响应,在乙腈溶液中,H2PO4-的大阴极位移高达约。发现200 mV。 [参考:52]

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