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首页> 外文期刊>Chemistry - A European Journal >Calix[6]arene-Based Cascade Complexes of Organic Ion Triplets Stable in a Protic Solvent
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Calix[6]arene-Based Cascade Complexes of Organic Ion Triplets Stable in a Protic Solvent

机译:在质子溶剂中稳定的基于杯[6]芳烃的有机离子三重态的级联配合物

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Herein we report a D3h-symmetric tail-to-tail bis-calix[6]arene 3 featuring two divergent cavities triply connected by ureido linkages. This calix[6]tube was synthesized by a domino Staudinger/aza-Wittig reaction followed by a macrocyclization reaction. This process also afforded a C2h-symmetric isomer that represents a rare example of a self-threaded rotaxane based on calix[6]arene subunits. The binding properties of 3 have been evaluated by NMR studies. Thus, bis-calix[6]arene 3 is able to bind simultaneously two neutral ureido guests through an induced-fit process. The guests are located in the cavities and are recognized through multiple hydrogen-bonding interactions with the ureido bridges. Host 3 can also simultaneously bind multiple ions and is especially efficient for the complexation of organic ion triplets. The anion is recognized through hydrogen-bonding interactions at the ureido binding site and is thus located between the two ammonium ions accommodated in the cavities. The resulting [1+1+2] quaternary complexes represent rare examples of cascade complexes with organic cations. These complexes are unique: 1) They are stable even in a markedly protic solvent, 2) the recognition of the ion triplets proceeds in a cooperative way through an induced-fit process and with a high selectivity, linear cations and doubly charged anions being particularly well recognized, 3) the ions are bound as contact ion triplets thanks to the closeness of the three binding sites, 4) the cationic guests can be exchanged and thus mixed [1+1+1+1] complexes can be obtained, 5) the ureido linkers wrapped around the anion adopt a helical shape and the resulting chirality is sensed by the cations. In other words, bis-calix[6]arene 3 presents a selective inner tunnel in which multiple guests such as organic ion triplets can be aligned in a cooperative way through induced-fit processes.
机译:在本文中,我们报告了一个D 3h 对称的尾对尾双杯[6]芳烃3,其特征是两个通过脲基键三联连接的发散腔。该杯[6]管是由多米诺骨牌Staudinger / aza-Wittig反应,然后进行大环化反应合成的。此过程还提供了C 2h 对称异构体,该异构体是基于杯[6]芳烃亚基的自螺纹轮烷的罕见实例。 3的结合特性已通过NMR研究进行了评估。因此,bis-calix [6] arene 3能够通过诱导拟合过程同时结合两个中性脲基客人。来宾位于空腔中,并通过与脲基桥的多次氢键相互作用来识别。主体3还可以同时结合多个离子,对于有机离子三重态的络合特别有效。阴离子通过在脲基结合位点的氢键相互作用而被识别,并因此位于容纳在空腔中的两个铵离子之间。所得的[1 + 1 + 2]季铵盐配合物代表有机阳离子级联配合物的罕见例子。这些络合物是独特的:1)即使在显着质子溶剂中也很稳定,2)离子三联体的识别通过诱导拟合过程以高选择性的协同方式进行,尤其是线性阳离子和双电荷阴离子众所周知,3)由于三个结合位点的紧密性,离子被结合成接触离子三重态; 4)可以交换阳离子客体,从而获得混合的[1 + 1 + 1 + 1]配合物,5)包裹在阴离子周围的脲基连接体呈螺旋状,阳离子可感测到的手性。换句话说,bis-calix [6] arene 3提供了一个选择性的内部隧道,其中多个来宾(例如有机离子三胞胎)可以通过感应拟合过程以协同方式对齐。

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