首页> 外文期刊>Inorganic Chemistry >An Integrated Approach (Thermodynamic, Structural, and Computational) to the Study of Complexation of Alkali-Metal Cations by a Lower-Rim Calix[4]arene Amide Derivative in Acetonitrile
【24h】

An Integrated Approach (Thermodynamic, Structural, and Computational) to the Study of Complexation of Alkali-Metal Cations by a Lower-Rim Calix[4]arene Amide Derivative in Acetonitrile

机译:乙腈中较低杯杯[4]芳烃酰胺衍生物络合碱金属阳离子的综合方法(热力学,结构和计算方法)

获取原文
获取原文并翻译 | 示例
           

摘要

The calix[4]arene secondary-amide derivative L was synthesized, and its complexation with alkali-metal cations in acetonitrile (MeCN) was studied by means of spectrophotometric, NMR, conductometric, and microcalorimetric titrations at 25 °C. The stability constants of the 1:1 (metal/ligand) complexes determined by different methods were in excellent agreement. For the complexation of M+ (M = Li, Na, K) with L, both enthalpic and entropic contributions were favorable, with their values and mutual relations being quite strongly dependent on the cation. The enthalpic and overall stability was the largest in the case of the sodium complex. Molecular and crystal structures of free L, its methanol and MeCN solvates, the sodium complex, and its MeCN solvate were determined by single-crystal X-ray diffraction. The inclusion of a MeCN molecule in the calixarene hydrophobic cavity was observed both in solution and in the solid state. This specific interaction was found to be stronger in the case of metal complexes compared to the free ligand because of the better preorganization of the hydrophobic cone to accept the solvent molecule. Density functional theory calculations showed that the flattened cone conformation (C2 point group) of L was generally more favorable than the square cone conformation (C4 point group). In the complex with Na+, L was in square cone conformation, whereas in its adduct with MeCN, the conformation was slightly distorted from the full symmetry. These conformations were in agreement with those observed in the solid state. The classical molecular dynamics simulations indicated that the MeCN molecule enters the L hydrophobic cavity of both the free ligand and its alkali-metal complexes. The inclusion of MeCN in the cone of free L was accompanied by the conformational change from C2 to C4 symmetry. As in solution studies, in the case of ML+ complexes, an allosteric effect was observed: the ligand was already in the appropriate square cone conformation to bind the solvent molecule, allowing it to more easily and faster enter the calixarene cavity.
机译:合成了杯[4]芳烃仲酰胺衍生物L,并在25°C下通过分光光度法,NMR,电导和微量量热法研究了其与乙腈中的碱金属阳离子的络合作用。通过不同方法测定的1:1(金属/配体)配合物的稳定性常数非常吻合。对于M +(M = Li,Na,K)与L的络合,焓和熵的贡献都是有利的,它们的值和相互关系非常依赖于阳离子。在钠配合物的情况下,焓和整体稳定性最大。游离L,其甲醇和MeCN溶剂化物,钠配合物及其MeCN溶剂化物的分子和晶体结构通过单晶X射线衍射测定。在溶液和固态下均观察到在杯芳烃疏水腔中包含MeCN分子。在金属络合物的情况下,发现这种特异性相互作用比游离配体更强,因为疏水性视锥团更好地预组织以接受溶剂分子。密度泛函理论计算表明,L的扁平圆锥构象(C2点组)通常比方形圆锥构象(C4点组)更有利。在具有Na +的配合物中,L为方锥构象,而在其与MeCN的加合物中,构象因完全对称而略微变形。这些构象与在固态下观察到的一致。经典的分子动力学模拟表明,MeCN分子进入自由配体及其碱金属配合物的L疏水腔。游离L的视锥中包含MeCN伴随着从C2对称性到C4对称性的构象变化。如在溶液研究中一样,在ML +配合物的情况下,观察到了变构效应:配体已经处于适当的方锥构象中以结合溶剂分子,使其更容易,更快速地进入杯芳烃腔。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号