首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Solvation Effect of Guest,Supramolecular Host,and Host-Guest Compounds on the Thermodynamic Selectivity of Calix(4)arene Derivatives and Soft Metal Cations
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Solvation Effect of Guest,Supramolecular Host,and Host-Guest Compounds on the Thermodynamic Selectivity of Calix(4)arene Derivatives and Soft Metal Cations

机译:客体,超分子主体和客体-客体化合物的溶剂化作用对杯形(4)芳烃衍生物和软金属阳离子的热力学选择性

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This paper reports thermodynamic data for the transfer of calixarene derivatives and their metal-ion complexes in dipolar aprotic solvents.These data are used to assess the effect of solvation of these compounds on the selective complexation shown by these macrocycles for soft metal cations in different media.Thus,solubilities and derived Gibbs energies of solution of 5,11,17,23-tetra-tert-butyl[25,27-bis(hydroxyl)-26,28-bis-(ethylthioethoxy)]calix(4)arene,1,and 5,1 l,17,23-tetra-tert-butyl-[25,27-bis(ethylenethanoate)-26,28-bis-(ethylthioethoxy)]-calix(4)arene,2,in various solvents at 298.15 K are reported.Solvation of these ligands in one medium relative to another is analyzed from their standard transfer Gibbs energies using acetonitrile as the reference solvent.These data are combined with transfer enthalpies(derived from standard solution enthalpies obtained calorimetrically)to calculate the corresponding entropies of transfer of these calix(4)-arene derivatives from acetonitrile to methanol and N,N-dimethylformamide.As far as the metal-ion salts(silver and mercury)in their free and complex forms are concerned,standard solution enthalpies were determined in acetonitrile,methanol,and N,N-dimethylformamide.These data are used to derive their transfer enthalpies from one medium to another.It is concluded that the extent of complexation of these macrocycles with soft metal cations is controlled by not only the solvation changes that the free cation undergoes in moving from one medium to another but also those for the ligand and its complex cation in these solvents.
机译:本文报道了杯芳烃衍生物及其金属离子络合物在偶极非质子传递溶剂中转移的热力学数据,这些数据用于评估这些化合物的溶剂化作用对这些大环化合物在不同介质中对软金属阳离子选择性络合的影响。 .5,11,17,23-四叔丁基[25,27-双(羟基)-26,28-双-(乙基硫乙氧基)]杯(4)芳烃溶液的溶解度和导出的吉布斯能, 1,和5,1 l,17,23-四叔丁基-[[25,27-双(乙硫酸酯)-26,28-双-(乙基硫代乙氧基)]-杯(4)芳烃,2报道了在298.15 K时这些配体在一种介质中相对于另一种介质的溶解度,使用乙腈作为参比溶剂,通过它们的标准转移吉布斯能分析了这些数据,并将这些数据与转移焓(由量热获得的标准溶液焓求得)相结合,计算出这些杯(4)-芳烃衍生物从乙腈转移的相应熵对于游离和复杂形式的金属离子盐(银和汞),在乙腈,甲醇和N,N-二甲基甲酰胺中测定了标准溶液焓。结论是,这些大环与软金属阳离子的络合程度不仅受游离阳离子从一种介质迁移到另一种介质时所经历的溶剂化变化的控制,而且还受其影响。这些溶剂中的配体及其络合阳离子。

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