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首页> 外文期刊>Organic & biomolecular chemistry >Anion binding of a neutral bis(cyclopeptide) in water-methanol mixtures containing up to 95% water
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Anion binding of a neutral bis(cyclopeptide) in water-methanol mixtures containing up to 95% water

机译:水含量高达95%的水-甲醇混合物中的中性双(环肽)的阴离子结合

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摘要

Anion receptor 2b was designed and synthesized, which was structurally derived from a previously described bis(cyclopeptide) 2a comprising two covalently linked cyclic hexapeptide rings with alternating l-proline and 6-aminopicolinic acid subunits. Solubilizing groups attached to the aromatic cyclopeptide subunits of 2b cause a substantial improvement of water solubility with respect to 2a, but have negligible effects on anion binding properties. Thus, anion affinity of 2b could be evaluated in aqueous solvent mixtures in which 2a is not sufficiently soluble, namely in water-methanol with a water content of up to 95 vol%. The solvent-dependent characterization of anion binding showed that the log K_a values of the iodide and sulfate complexes of 2b decrease linearly with increasing water content while the individual contributions of complexation enthalpy and entropy correlate with the solvent composition in a more complex manner. The obtained results provide insight into the factors that control anion affinity and selectivity of these neutral receptors in aqueous media. In addition, they show that substantial anion affinity can be expected even in 100% water.
机译:设计并合成了阴离子受体2b,该阴离子受体2b从结构上衍生自先前描述的双(环肽)2a,该双(环肽)2a包含两个带有交替的L-脯氨酸和6-氨基吡啶甲酸亚基的共价连接的环六肽环。与2b的芳族环肽亚基相连的增溶基团相对于2a引起水溶性的显着改善,但是对阴离子结合性能的影响可忽略不计。因此,可以在2a不能充分溶解的水性溶剂混合物中,即在水含量不超过95%(体积)的水-甲醇混合物中评估2b的阴离子亲和力。阴离子结合的溶剂依赖性表征表明,2b的碘化物和硫酸盐配合物的log K_a值随水含量的增加而线性降低,而络合焓和熵的各个贡献与溶剂组成的关系更为复杂。所获得的结果提供了对控制水性介质中这些中性受体的阴离子亲和力和选择性的因素的认识。此外,他们表明,即使在100%的水中,也可以预期具有显着的阴离子亲和力。

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  • 来源
    《Organic & biomolecular chemistry》 |2014年第44期|8851-8860|共10页
  • 作者

    Fabian Sommer; Stefan Kubik;

  • 作者单位

    Technische Universitaet Kaiserslautern, Fachbereich Chemie - Organische Chemie, Erwin-Schroedinger-Strasse, D-67663 Kaiserslautern, Germany;

    Technische Universitaet Kaiserslautern, Fachbereich Chemie - Organische Chemie, Erwin-Schroedinger-Strasse, D-67663 Kaiserslautern, Germany;

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