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首页> 外文期刊>Journal of Inclusion Phenomena and Macrocyclic Chemistry >Silica-attached molecular receptor complexes for benzoates and naphthoates
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Silica-attached molecular receptor complexes for benzoates and naphthoates

机译:硅酸盐附接的苯甲酸酯和萘甲酸酯的分子受体复合物

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Abstract A series of cyclen (1,4,7,10-tetraazacyclododecane) derived molecular receptors for aromatic oxoanions, that are activated by complexation with Cd(II), have been covalently linked to 3-(glycidoxy)propyl-functionalised silica gel (70–230 mesh). These immobilised receptor complexes are highly effective for the sequestration of o-hydroxybenzoates and 2-naphthoate from aqueous solution, achieving a >80% saturation level by stirring the material in the aqueous solution for 1 h at pH 7.00 and 298 K. Examination of the uptake levels of a variety of different benzoates and naphthoates suggests that the retention mechanism involves a combination of classical hydrogen bonding and non-classical, water mediated, O–H···π hydrogen bonding. Contrary to expectations, attachment of hydroxy terminated polyether chains to the periphery of the receptor complex diminished the level of uptake.
机译:摘要一系列由环(1,4,7,10-四氮杂环十二烷)衍生的芳香族氧阴离子分子受体通过与Cd(II)络合而活化,已与3-(环氧丙氧基)丙基官能化的硅胶( 70–230目)。这些固定的受体复合物对于从水溶液中螯合邻羟基苯甲酸酯和2-萘甲酸酯是非常有效的,通过在水溶液中在pH 7.00和298 K下搅拌1 h,可以达到> 80%的饱和度。各种不同的苯甲酸酯和萘甲酸酯的吸收水平表明,保留机理涉及经典的氢键和非经典的水介导的OH··π氢键的结合。与预期相反,羟基封端的聚醚链与受体复合物外围的连接减少了摄取水平。

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