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首页> 外文期刊>Bulletin of the Korean Chemical Society >Theoretical Study of Trioxane Derivatives as Amphi-ionophores: Importance of Charge-Dipolar Moiety Orientation
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Theoretical Study of Trioxane Derivatives as Amphi-ionophores: Importance of Charge-Dipolar Moiety Orientation

机译:三恶烷衍生物作为两性离子载体的理论研究:电荷偶极基团取向的重要性

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Recently we have reported a novel class of anion receptors which are based on 2n-crown-n topology. Trioxane derivatives are capable of anion sensing through pure aliphatic C-H hydrogen bonding. In this work, we highlight another interesting property, i.e., they can also recognize cations as normal crown ethers (3n-crown-n topology). Since the same functional moiety can recognize anions and cations, these coronands are predicted to be amphi-ionophores. However, we could not detect cations even in the gas jjhase. Considering trioxane is analogous to [l6]starand, this was rather counter-intuitive. The calculation results show that these coronands can detect alkali metals with very low affinity. The low affinity toward cations should be responsible for this failure of experimental detection. With careful theoretical study, we found that this low affinity toward cations could be explained by the unfavorable charge-dipolar moiety orientations as proposed by Cui et al. As in the case of [1_6]starand, this is an example that underscores the importance of charge-dipolar moiety orientation in supramolecular interactions.
机译:最近,我们报告了一种基于2n-crown-n拓扑结构的新型阴离子受体。三恶烷衍生物能够通过纯脂肪族C-H氢键进行阴离子感测。在这项工作中,我们强调了另一个有趣的特性,即它们也可以将阳离子识别为普通的冠醚(3n-crown-n拓扑)。由于相同的功能部分可以识别阴离子和阳离子,因此预测这些冠冕是两性离子载体。但是,即使在气体中也无法检测阳离子。考虑到三恶烷类似于[16] starand,这是违反直觉的。计算结果表明,这些冠冕可以低亲和力检测碱金属。对阳离子的低亲和力应该是导致实验检测失败的原因。通过仔细的理论研究,我们发现对阳离子的这种低亲和力可以由Cui等人提出的不利的电荷-偶极部分取向来解释。与[1_6] starand的情况一样,这是一个例子,强调了超分子相互作用中电荷-偶极部分取向的重要性。

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