Dipartimento di Chimica Organica ed Industriale and Unità INSTM, UdR Parma, Università degli Studi di Parma, Viale G. P. Usberti 17/a, 43124 Parma, Italy.
Chemistry. 2010 Jul 12;16(26):7813-9. doi: 10.1002/chem.201000573.
The capability of resorcinarenes to bind anions within the alkyl feet at the lower rim has been exploited as the starting point for developing a new cavitand able to engulf contact ion pairs of primary ammonium salts in chlorinated solvents with association constants (K(ass)) in the range of 10(3)-10(4) M(-1). Methylene bridges were introduced into the upper rim to freeze the resorcinarene in the cone conformation with the four H(down) protons converging in the lower pocket, thereby maximizing the CH-anion interactions responsible for the anion binding. Four additional phosphate moieties were introduced into the lower rim in close proximity to the anionic site to provide hydrogen-bonding-acceptor P=O groups and promote cation complexation at the bottom of the cavitand. The binding ability of the synthesized ligands was analyzed by (1)H NMR spectroscopy and, when possible, by isothermal titration calorimetry (ITC); the data were in agreement when complementary techniques were used.
树脂酚能够在较低边缘的烷基脚上结合阴离子,这一特性被利用作为开发一种新的主体化合物的起点,这种主体化合物能够在氯化溶剂中容纳伯铵盐的接触离子对,其缔合常数(K(ass))在 10(3)-10(4) M(-1)范围内。亚甲基桥被引入到上边缘,将树脂酚固定在锥型构象中,四个 H(down)质子在较低的口袋中汇聚,从而最大限度地增加负责阴离子结合的 CH-阴离子相互作用。四个额外的磷酸部分被引入到下边缘,靠近阴离子部位,以提供氢键受体 P=O 基团,并促进主体化合物底部的阳离子络合。通过 (1)H NMR 光谱分析和在可能的情况下通过等温热滴定法(ITC)分析合成配体的结合能力;当使用互补技术时,数据是一致的。