首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Location of a Metallic Cation Complexed in a Calixarene Cavity As Determined by Calixarene ~(13)C Spin Relaxation. Application to Cesium and Thallium Complexed by p-Sulfonatocalix[4]arene in Water
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Location of a Metallic Cation Complexed in a Calixarene Cavity As Determined by Calixarene ~(13)C Spin Relaxation. Application to Cesium and Thallium Complexed by p-Sulfonatocalix[4]arene in Water

机译:通过杯芳烃〜(13)C自旋弛豫确定的在杯芳烃腔中络合的金属阳离子的位置。对磺磺酸杯[4]芳烃在水中铯和and中的应用

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This study deals with the exact location of the monovalent metal cations Cs~+ and Tl~+ which are complexed by the p-sulfonatocalix[4]arene in water. This determination rests on the measurements of longitudinal relaxation times of carbon-13 not directly bonded to protons. The difference between the relaxation times of the free calixarene and of the complex definitely demonstrates that the monovalent metal cation is well inside the calixarene cavity. These features are in fact enhanced by the presence of paramagnetic species which act in a different way in the complexed form. Experimental results also show without any ambiguity that the calixarene cavity is essentially hydrophobic. Finally, it is observed that thallium is more mobile than cesium within the calixarene cavity.
机译:这项研究处理了在水中被对-磺基对杯[4]芳烃络合的一价金属阳离子Cs〜+和Tl〜+的确切位置。该确定取决于未直接键合于质子的碳13的纵向弛豫时间。游离杯芳烃和配合物的弛豫时间之间的差异明确表明,单价金属阳离子很好地位于杯芳烃腔内部。这些特征实际上通过顺磁性物质的存在而增强,顺磁性物质以复杂的形式以不同的方式起作用。实验结果还清楚地表明杯芳烃腔基本上是疏水的。最后,观察到cal在杯芳烃腔中比铯更具流动性。

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