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质子化和芳香双脲衍生物的阴离子结合性质-理解质子转移。

Protonation and Anion Binding Properties of Aromatic Bis-Urea Derivatives-Comprehending the Proton Transfer.

机构信息

Division of Physical Chemistry, Department of Chemistry, Faculty of Science, Horvatovac 102a, 10000, Zagreb, Croatia.

Division of Physical Chemistry, Ruđer Bošković Institute, Bijenička cesta 54, 10000, Zagreb, Croatia.

出版信息

Chemistry. 2019 Mar 27;25(18):4695-4706. doi: 10.1002/chem.201805633. Epub 2019 Mar 4.

Abstract

A series of aromatic bis-urea derivatives was prepared and their proton dissociation, as well as anion binding properties in DMSO were investigated. To this end, UV/Vis and H NMR spectroscopies and computational methods were employed. The synthesized molecules differed in the relative position of the urea moieties (ortho- and meta-derivatives) and in the functional groups (-H, -CH , -OCH , -NO ) in the para-position of the pendant phenyl groups. Remarkably high acidities of the compounds (logK ≈14), were ascribed primarily to the stabilizing effect of the aromatic subunits. Quantum chemical calculations corroborated the conclusions drawn from experimental data and provided information from the structural point of view. Knowledge regarding protonation properties proved to be essential for reliable quantitative determination of anion binding affinities. Studied receptors were selective for acetate and dihydrogen phosphate among several anions. Formation of their complexes of 1:1 and 1:2 (ligand/anion) stoichiometries was quantitatively characterized. Proton transfer was taken into account in the course of data analysis, which was especially important in the case of AcO . ortho-Receptors were proven to be more efficient acetate binders, achieving coordination with all four NH groups. The meta-analogues preferred dihydrogen phosphate, which acted as both hydrogen bond donor and acceptor. Cooperative binding was detected in the case of 1:2 H PO complexes, which was assigned to formation of interanionic hydrogen bonds.

摘要

我们合成了一系列的芳香双脲衍生物,并研究了它们在 DMSO 中的质子离解和阴离子结合性质。为此,我们采用了 UV/Vis 和 1 H NMR 光谱以及计算方法。合成的分子在脲基部分(邻位和间位衍生物)以及在苯环侧链上对位的取代基(-H、-CH 3 、-OCH 3 、-NO 2 )的相对位置上有所不同。这些化合物具有非常高的酸度(logK ≈ 14),主要归因于芳基部分的稳定作用。量子化学计算证实了实验数据得出的结论,并从结构角度提供了信息。对质子化性质的了解对于可靠地定量测定阴离子结合亲和力至关重要。所研究的受体对几种阴离子中的乙酸盐和二氢磷酸盐具有选择性。定量表征了它们 1:1 和 1:2(配体/阴离子)组成的配合物的形成。在数据分析过程中考虑了质子转移,这在 AcO -的情况下尤为重要。邻位受体被证明是更有效的乙酸盐结合剂,能够与所有四个 NH 基团配位。间位类似物更喜欢二氢磷酸盐,它既是氢键供体又是受体。在 1:2 HPO 4 2-配合物中检测到协同结合,这归因于形成相间氢键。

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