Taggart Garrett A, Antonio Alexandra M, Lorzing Gregory R, Yap Glenn P A, Bloch Eric D
Department of Chemistry and Biochemistry, University of Delaware, Newark, Delaware 19716, United States.
Center for Neutron Science, Department of Chemical and Biomolecular Engineering, University of Delaware, Newark, Delaware 19716, United States.
ACS Appl Mater Interfaces. 2020 Jun 3;12(22):24913-24919. doi: 10.1021/acsami.0c06434. Epub 2020 May 21.
The molecular nature of porous coordination cages can endow these materials with significant advantages as compared to extended network solids. Chiefly among these is their solubility in volatile solvents, which can be leveraged in the synthesis, characterization, modification, and utilization of these adsorbents. Although cuboctahedral, paddlewheel-based coordination cages have shown some of the highest surface areas for coordination cages, they often have limited solubility. Here, we show that amide and ester functionalization, which has been widely utilized in porous solids to tune material properties, can be used to tune the solubility, porosity, and bulk adsorbent properties of copper-, chromium-, and molybdenum-based cuboctahedral coordination cages. In addition, we demonstrate that the solubility of a set of diphenylamide-functionalized cages can be utilized to increase their bulk densities for gas storage applications. For a subset of these cages, we further show that amide and ester functional groups can be added postsynthetically, a strategy that is particularly important for the latter where direct cage syntheses with these groups are challenging.
与扩展网络固体相比,多孔配位笼的分子性质赋予了这些材料显著的优势。其中最主要的是它们在挥发性溶剂中的溶解性,这可用于这些吸附剂的合成、表征、改性和利用。尽管基于桨轮的立方八面体配位笼展现出了一些配位笼中最高的比表面积,但它们的溶解性往往有限。在此,我们表明,已在多孔固体中广泛用于调节材料性能的酰胺和酯官能化,可用于调节基于铜、铬和钼的立方八面体配位笼的溶解性、孔隙率和整体吸附性能。此外,我们证明了一组二苯甲酰胺官能化笼的溶解性可用于提高其在气体存储应用中的堆积密度。对于这些笼中的一个子集,我们进一步表明酰胺和酯官能团可在合成后添加,这一策略对于后者尤为重要,因为直接用这些基团合成笼具有挑战性。