Weiße Andrea, Seichter Wilhelm, Mazik Monika
Institut für Organische Chemie, Technische Universität Bergakademie Freiberg, Leipziger Straße 29, 09596 Freiberg, Germany.
Molecules. 2023 Sep 7;28(18):6485. doi: 10.3390/molecules28186485.
A series of mono- and dicationic 1,3,5-trisubstituted 2,4,6-triethylbenzenes containing pyridinium groups in combination with aminopyrimidine-/aminopyridine-based recognition units were synthesized and crystallographically studied. The combination of neutral and ionic building blocks represents a promising strategy for the development of effective and selective artificial receptors for anionic substrates. In the crystalline state, the investigated compounds show a tendency to bind the counterion PF in the cavity formed by the three functionalized side-arms. The intermolecular interactions with the PF ion comprise N-H∙∙∙F and C-H∙∙∙F bonds. Detailed analysis of various supramolecular motifs, including interactions with solvent molecules, provides deeper insights into the processes of molecular recognition. The information obtained is useful in the development of new receptor molecules for anions and in the selection of the most appropriate counterion.
合成了一系列含有吡啶鎓基团并与基于氨基嘧啶/氨基吡啶的识别单元相结合的单阳离子和双阳离子1,3,5-三取代2,4,6-三乙基苯,并进行了晶体学研究。中性和离子构建块的组合是开发用于阴离子底物的有效和选择性人工受体的一种有前景的策略。在晶体状态下,所研究的化合物显示出在由三个功能化侧臂形成的腔内结合抗衡离子PF的趋势。与PF离子的分子间相互作用包括N-H∙∙∙F和C-H∙∙∙F键。对各种超分子基序的详细分析,包括与溶剂分子的相互作用,为分子识别过程提供了更深入的见解。所获得的信息有助于开发用于阴离子的新受体分子以及选择最合适的抗衡离子。