Dworzak Michael R, Deegan Meaghan M, Yap Glenn P A, Bloch Eric D
Department of Chemistry and Biochemistry, University of Delaware, Newark, Delaware 19716, United States.
Inorg Chem. 2021 Apr 19;60(8):5607-5616. doi: 10.1021/acs.inorgchem.0c03554. Epub 2021 Mar 30.
Functionalization of permanently porous coordination cages has been used to tune phase, surface area, stability, and solubility in this promising class of adsorbents. For many cages, however, these properties are intricately tied together, and installation of functional groups, for example, to increase solubility often leads to a decrease in surface area. Calixarene-capped cages offer the advantage in that they are cluster-terminated cages whose solid-state packing, and thus surface area, is typically governed by the nature of the capping ligand rather than the bridging ligand. In this work we investigate the influence of ligand functionalization on two series of isoreticular Ni(II)- and Co(II)-based calixarene-capped cages. The two types of materials described are represented as octahedral and rectangular prismatic coordination cages and can be synthesized in a modular manner, allowing for the substitution of dicarboxylate bridging ligands and the introduction of functional groups in specific locations on the cage. We ultimately show that highly soluble cages can be obtained while still having access to high surface areas for many of the isolated phases.
在这类很有前景的吸附剂中,通过对永久多孔配位笼进行功能化来调节相态、表面积、稳定性和溶解性。然而,对于许多笼子而言,这些性质相互紧密关联,例如,引入官能团以增加溶解性往往会导致表面积减小。杯芳烃封端的笼子具有这样的优势,即它们是簇端基笼子,其固态堆积以及表面积通常由封端配体而非桥连配体的性质决定。在这项工作中,我们研究了配体功能化对两个系列等规的基于镍(II)和钴(II)的杯芳烃封端笼子的影响。所描述的两种材料分别表示为八面体和长方体配位笼,并且可以以模块化方式合成,允许取代二羧酸桥连配体并在笼子的特定位置引入官能团。我们最终表明,在许多分离相中,既可以获得高溶解性的笼子,同时又能保持高表面积。