Institut für Organische Chemie, Technische Universität Bergakademie Freiberg, Leipziger Strasse 29, 09599, Freiberg, Germany.
ChemistryOpen. 2020 Nov 26;9(11):1202-1213. doi: 10.1002/open.202000268. eCollection 2020 Nov.
A series of new 9,9-diethylfluorenes consisting of three side-arms each bearing a heterocyclic, bis(carboxymethyl)amino, bis(carbamoylmethyl)amino, bis(ethoxycarbonylmethyl)amino or an amino group were prepared on the basis of 2,4,7-tris(bromomethyl)-9,9-diethylfluorene. Imidazolyl, benzimidazolyl, pyrazolyl, pyrrolyl, 1,3-dioxoisoindolyl and pyridinium groups were taken into account as heterocyclic units, attached to the aromatic skeleton via -CH-, -CHNHCH- or -CHN=CH- linkers. In addition to the seventeen 2,4,7-trisubstituted 9,9-diethylfluorenes, two macrocyclic compounds were prepared on the basis of 2,7-bis(aminomethyl)-9,9-diethylfluorene. The excellent yield of the macrocyclization reaction is worth a special mention. Both the acyclic and the macrocyclic fluorene-based compounds have, among other things, the potential to act as artificial receptors for different substrates in analogy to the known receptors consisting of a benzene or biphenyl core.
一系列新的 9,9-二乙基芴,由三个侧臂组成,每个侧臂都带有一个杂环、双(羧甲基)氨基、双(氨甲酰基甲基)氨基、双(乙氧羰基甲基)氨基或氨基,是基于 2,4,7-三(溴甲基)-9,9-二乙基芴制备的。咪唑基、苯并咪唑基、吡唑基、吡咯基、1,3-二氧代异吲哚基和吡啶鎓基被视为杂环单元,通过-CH-、-CHNHCH-或-CHN=CH-键合连接到芳基骨架上。除了十七种 2,4,7-三取代的 9,9-二乙基芴外,还基于 2,7-双(氨甲基)-9,9-二乙基芴制备了两种大环化合物。大环化反应的优异产率值得特别提及。无环和大环芴基化合物除其他外,有可能像由苯或联苯核组成的已知受体一样,作为不同底物的人工受体。