Department of Chemistry, Western Michigan University, Kalamazoo, MI 49008, USA.
Molecules. 2021 May 21;26(11):3083. doi: 10.3390/molecules26113083.
Anion binding and extraction from solutions is currently a dynamic research topic in the field of supramolecular chemistry. A particularly challenging task is the extraction of anions with large hydration energies, such as the carbonate ion. Carbonate-binding complexes are also receiving increased interest due to their relevance to atmospheric CO fixation. Nanojars are a class of self-assembled, supramolecular coordination complexes that have been shown to bind highly hydrophilic anions and to extract even the most hydrophilic ones, including carbonate, from water into aliphatic solvents. Here we present an expanded nanojar that is able to bind two carbonate ions, thus doubling the previously reported carbonate-binding capacity of nanojars. The new nanojar is characterized by detailed single-crystal X-ray crystallographic studies in the solid state and electrospray ionization mass spectrometric (including tandem MS/MS) studies in solution.
阴离子与溶液的结合和提取是目前超分子化学领域的一个活跃研究课题。一项特别具有挑战性的任务是提取具有大水合能的阴离子,如碳酸根离子。由于与大气中 CO2 的固定有关,碳酸根结合物也越来越受到关注。纳米筒是一类自组装的超分子配位化合物,已被证明可以结合高度亲水性的阴离子,并将包括碳酸根在内的最亲水性的阴离子从水中萃取到脂肪族溶剂中。在这里,我们提出了一种扩展的纳米筒,它能够结合两个碳酸根离子,从而使纳米筒的碳酸根结合能力提高了一倍。新的纳米筒通过在固态下的详细单晶 X 射线晶体学研究和在溶液中的电喷雾电离质谱(包括串联 MS/MS)研究进行了表征。