J. Heyrovský Institute of Physical Chemistry , Academy of Sciences, Dolejskova 3, 182 23 Prague 8, Czech Republic.
J Org Chem. 2013 Nov 1;78(21):10651-6. doi: 10.1021/jo4015613. Epub 2013 Oct 16.
The calix[4]arene skeleton is electrochemically inactive, but it is a useful stable frame for building "smart" molecules and supramolecular assemblies. Suitable substitution on the upper (and/or lower) rim leads to unusual and surprising properties in this system. Polynitrocalix[4]arenes with reducible nitro groups located at the upper rim represent molecules with multiple redox centers where the potential for interactions between them is the focus of interest. The title compounds are promising precursors, e.g., for design and synthesis of sensors. In this work, the stepwise reduction of two tetranitrocalixarenes was investigated electrochemically, and the results were correlated with quantum chemical calculations. The order of individual electron transfers was described as a consequence of molecular geometry. Two independent pairs of equivalent nitro groups were identified whose reduction potential depends upon their respective locations in the molecule. All nitro groups are electronically isolated and thus are reduced independently yielding poly radical ions. The increasing charge has negligible impact on the geometry of the calixarene, which maintains its pinched shape even when carrying an overall molecular charge of -4.
杯芳烃骨架在电化学上是不活跃的,但它是构建“智能”分子和超分子组装的有用稳定框架。在上部(和/或下部)边缘进行适当的取代会导致该系统中出现异常和惊人的性质。具有位于上部边缘的可还原硝基基团的多硝基杯芳烃代表具有多个氧化还原中心的分子,它们之间相互作用的潜力是关注的焦点。标题化合物是有前途的前体,例如用于设计和合成传感器。在这项工作中,通过电化学研究了两种四硝基杯芳烃的分步还原,并将结果与量子化学计算相关联。单个电子转移的顺序被描述为分子几何形状的结果。确定了两对独立的等效硝基基团,其还原电位取决于它们在分子中的各自位置。所有的硝基基团都是电子隔离的,因此可以独立还原生成多自由基离子。增加的电荷对杯芳烃的几何形状几乎没有影响,即使携带整体分子电荷为-4,它也保持其捏合形状。