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How to achieve self-assembly in polar solvents based on specific interactions? Some general guidelines

机译:如何基于特定的相互作用在极性溶剂中实现自组装?一些一般准则

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In general, self-assembly in polar solutions requires a combination of several non-covalent interactions within one binding motif. Besides the combination of H-bonds and hydrophobic or aromatic stacking interactions, in the last few years H-bonded ion pairs have been proven useful in this context. Also the molecular rigidity and the extent of intra- versus intermolecular interactions within the monomer play an important role in determining the self-assembling properties of a given monomer. We present some general guidelines and illustrative examples of various approaches that have been pursued in the literature before finally concentrating on a case study from our own work, the dimerization of a guanidiniocarbonyl pyrrole carboxylate zwitterion. This zwitterion forms stable dimers with K > 10~9 M~(-1) in DMSO and > 10~2 M~(-1) even in water and can not only be used to study the importance of various non-covalent interactions for self-assembly in polar solvents but also to construct large nanostructures.
机译:通常,极性溶液中的自组装需要在一个结合基序中结合几种非共价相互作用。除了结合氢键和疏水性或芳香族堆积相互作用外,近几年来,氢键结合的离子对在这种情况下被证明是有用的。单体中的分子刚度以及分子内和分子间相互作用的程度在确定给定单体的自组装性能中也起着重要作用。在最终集中于我们自己的工作,即胍基二羰基吡咯羧酸酯两性离子的二聚化之前,我们提供了一些文献中已经采用的各种方法的一般指导原则和说明性实例。这种两性离子在DMSO中形成K> 10〜9 M〜(-1)且在水中也> 10〜2 M〜(-1)的稳定二聚体,不仅可以用于研究各种非共价相互作用对于在极性溶剂中自组装,也可构建大的纳米结构。

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