首页> 外文期刊>Organometallics >ANION RECOGNITION BY REDOX-RESPONSIVE DITOPIC BIS-COBALTOCENIUM RECEPTOR MOLECULES INCLUDING A NOVEL CALIX[4]ARENE DERIVATIVE THAT BINDS A DICARBOXYLATE DIANION
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ANION RECOGNITION BY REDOX-RESPONSIVE DITOPIC BIS-COBALTOCENIUM RECEPTOR MOLECULES INCLUDING A NOVEL CALIX[4]ARENE DERIVATIVE THAT BINDS A DICARBOXYLATE DIANION

机译:氧化还原型双歧双酚-钴受体分子与新型杯[4]芳烃衍生物的阴离子识别,结合双羧酸根离子

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摘要

A series of novel ditopic bis-cobaltocenium receptor molecules containing alkyl, aryl, and calix[4]arene spacers have been synthesized via the reaction of the new synthon 1-(ethylcarboxy)-1'-(chlorocarbonyl)cobaltocenium chloride (3) or 1-(chloro carbonyl)cobaltocenium chloride (9) with the appropriate diamine. Proton NMR halide anion coordination studies reveal that the ethyl- (4), propyl- (5), and butyl-linked (6) derivatives form 1:1 stoichiometric complexes in acetonitrile solutions. Stability constant determinations suggest that the ethyl derivative 4 exhibits selectivity for the chloride anion in preference to bromide or iodide. Receptors containing larger aryl (7,8,10) and alkylamino (11) spacers form complexes of2:1 halide anion:receptor stoichiometry. An X-ray crystal structure of the bis-cobaltocenium calix[4]arene derivative 15 is described. This receptor forms extremely stable 1:1 anion complexes with chloride, bromide, and H2PO4- in dimethylsulfoxide solutions and with the dicarboxylate dianion adipate in acetone. Ah the bis-cobaltocenium systems were found to display electrochemical recognition of varied anion guests, as shown by cyclic voltammetric experiments. Receptor 15 was also found to redox-respond to the presence of adipate. [References: 32]
机译:通过新的合成子1-(乙基羧基)-1'-(氯羰基)氯化钴(3)的反应,合成了一系列含有烷基,芳基和杯[4]芳烃间隔基的新颖的双位双钴ce受体分子。 1-(氯羰基)氯化钴铈(9)与适当的二胺。质子NMR卤化物阴离子配位研究表明,乙基(4),丙基(5)和丁基连接(6)衍生物在乙腈溶液中形成1:1的化学计量配合物。稳定性常数的测定表明,乙基衍生物4对氯离子的选择性优于溴离子或碘离子。包含较大的芳基(7,8,10)和烷基氨基(11)间隔基的受体形成2:1卤化物阴离子:受体化学计量比的配合物。描述了双钴ce杯[4]芳烃衍生物15的X射线晶体结构。该受体与二甲基亚砜溶液中的氯离子,溴离子和H2PO4-以及与丙酮中的己二酸二羧酸酯二阴离子形成极稳定的1:1阴离子络合物。如循环伏安实验所示,发现双钴ce体系显示出对各种阴离子客体的电化学识别。还发现受体15对己二酸的存在进行氧化还原反应。 [参考:32]

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