Arduini Arturo, Credi Alberto, Faimani Giovanni, Massera Chiara, Pochini Andrea, Secchi Andrea, Semeraro Monica, Silvi Serena, Ugozzoli Franco
Dipartimento di Chimica Organica e Industriale, Università di Parma via G.P. Usberti 17/a, 43100 Parma, Italy.
Chemistry. 2008;14(1):98-106. doi: 10.1002/chem.200700748.
A synthetic study to disclose the more appropriate manner by which two calix[6]arene units could be connected for the construction of an extended tubular structure was undertaken. As a result, a head-to-tail double calix[6]arene having the structure of an oriented nanotube that is about 2.6 nm long and 1.6 nm wide was prepared and characterized. This molecule is able to act as a wheel-type host and forms a supramolecular complex with an axle-type molecule, derived from 4,4'-bipyridinium (viologen), through very efficient self-assembly in solution. The properties of such a pseudorotaxane-type complex, which is stabilized by a combination of noncovalent interactions, were investigated in solution by UV/Vis absorption spectroscopy and voltammetric methods. These observations provide a clue about the location of the bipyridinium unit along the nanotube. In the solid state, the complex undergoes a further stage of self-assembly, thereby initiating extended oriented tubular structures. Crystallographic studies revealed that the positioning of the viologen dication in this asymmetric wheel is addressed by a complicated pattern of cooperative noncovalent intermolecular interactions that involve only one half of the host, whereas the remaining (more polar) half of the host is exploited to create long-range structural order that leads to a "secondary" structure of extended supramolecular channels that, in turn, self-assemble in the lattice, thus giving rise to a "tertiary" structure of parallel sandwiches of nanotubes.
开展了一项合成研究,以揭示连接两个杯[6]芳烃单元以构建扩展管状结构的更合适方式。结果,制备并表征了一种具有定向纳米管结构的头对头双杯[6]芳烃,该纳米管长约2.6纳米,宽1.6纳米。这种分子能够作为轮型主体,并通过在溶液中非常高效的自组装与源自4,4'-联吡啶鎓(紫精)的轴型分子形成超分子复合物。通过紫外/可见吸收光谱和伏安法在溶液中研究了这种通过非共价相互作用结合而稳定的准轮烷型复合物的性质。这些观察结果为联吡啶鎓单元沿纳米管的位置提供了线索。在固态下,该复合物经历进一步的自组装阶段,从而引发扩展的定向管状结构。晶体学研究表明,紫精双阳离子在这种不对称轮中的定位是通过一种复杂的协同非共价分子间相互作用模式实现的,这种相互作用仅涉及主体的一半,而主体的其余(极性更强)一半则用于创建导致扩展超分子通道“二级”结构的长程结构有序,进而在晶格中自组装,从而产生纳米管平行三明治的“三级”结构。