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MOLECULAR MECCANO .2. SELF-ASSEMBLY OF [ETA]CATENANES [Review]

机译:分子麦加诺.2。 [ETA]类别的自组装[评论]

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The mutual molecular recognition between different: structural components in large rings has led to the template-directed synthesis of a wide range of catenanes composed of from two to five interlocked rings, The molecular self-assembly processes rely upon the recognition between (i) pi-electron rich and pi-electron deficient aromatic units and (ii) hydrogen bond donors and accepters, in the different components. In order to increase Our knowledge of the factors involved in such molecular self-assembly processes, a homologous series of [2]catenanes has been constructed using macrocyclic polyethers of the bis(p-phenylene)-(3n+4)-crown-n (n = 9-14) type as templates for the formation of the tetracationic cyclophane, cyclobis(paraquat-p-phenylene). Increasing the size of the tetracationic cyclophane to cyclobis(paraquat-4,4'-bitolyl) allows the simultaneous entrapment of two hydroquinone ring-containing macrocyclic polyethers affording a series of [3]catenanes, and one [4]catenane incorporating a cyclic dimer of the expanded cyclophane and three bis(p-phenylene)-34-crown-10 components. By analogy; increasing the number of hydroquinone rings in the macrocyclic polyether permits the self-assembly of more than one tetracationic cyclophane around the templates present in the macrocyclic polyether. In this context, the template-directed synthesis of two [3]catenanes, incorporating two cyclobis(paraquat-p-phenylene) components and either (i) tris(p-phenylene)51-crown-15 or (ii) tetrakis (p-phenylene)-68-crown-20, has been achieved and is reported. A combination of these two approaches has led to the successful self-assembly, in two steps, of a linear [4]catenane, together with a small amount of a [5]catenane: The creation of these intricate molecular compounds lends support to the contention that self-assembly is a viable paradigm for the construction of nanometer-scale molecular architectures incorporating a selection of simple components. [References: 116]
机译:不同环之间的相互分子识别:大环中的结构成分导致模板导向的合成由2个至5个互锁环组成的各种链烯,分子自组装过程依赖于(i)pi之间的识别-电子富集和π电子缺乏的芳族单元,和(ii)氢键供体和受体,在不同的组分中。为了增加我们对涉及此类分子自组装过程的因素的了解,已使用双(对亚苯基)-(3n + 4)-冠-n的大环聚醚构建了一系列[2]邻苯二酚的同源物(n = 9-14)类型作为模板形成四阳离子环烷,环双(百草枯-对亚苯基)。将四阳离子环庚烷的尺寸增加到环双(百草枯-4,4'-二甲苯基)可以同时捕获两个含氢醌环的大环聚醚,从而提供一系列的[3]邻苯二酚和一个[4]环烷并入环状二聚体环芳基和三个双(对亚苯基)-34-crown-10组分的组成。类推;增加大环聚醚中对苯二酚环的数目允许在大环聚醚中存在的模板周围自组装一个以上的四阳离子环烷。在这种情况下,由模板指导的两个[3]邻苯二酚的合成,其中包含两个环双(百草枯-对苯撑)组分和(i)三(对苯撑)51-crown-15或(ii)四(p (亚苯基)-68-crown-20,已经实现并报道。这两种方法的结合已导致线性[4]邻烷和少量[5]邻烷在两步中成功完成自组装:这些复杂分子化合物的产生为化合物的制备提供了支持。有人认为,自组装是构建纳米级分子结构并结合多种简单成分的可行范例。 [参考:116]

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