Freie Universität Berlin, Fachbereich Biologie, Chemie, Pharmazie, Institut für Chemie und Biochemie, Fabeckstrasse 34-36, D-14195, Berlin, Germany.
Chemistry. 2019 Mar 7;25(14):3440-3454. doi: 10.1002/chem.201803927. Epub 2018 Dec 13.
Corannulene is a multifaceted polyaromatic compound. It has many interesting properties; for example, it has a bowl-shaped molecular structure that, in addition, undergoes a dynamic inversion process. It has attracted much attention within the last decades. This is not only due to its structural properties but also its electronic properties and its various potential applications to materials chemistry. Here, synthetic approaches towards corannulene derivatives with electron-withdrawing substituents are summarized. This includes both selective and unselective methods. Further, the electrochemical properties, that is, the reduction potentials, are analyzed and compared. As a main conclusion, one can state that the electron affinity depends roughly linearly on the number of substituents. Finally, the structural behavior of the substituted buckybowls in the solid state is highlighted. This also allows a general statement about the influence of the electronic and steric nature of substituents on the molecular structures and the solid-state packing of the corannulene derivatives.
并五苯是一种多面的多环芳烃化合物。它具有许多有趣的性质;例如,它具有碗状的分子结构,此外还经历动态反转过程。在过去几十年中,它引起了广泛关注。这不仅是由于其结构性质,还由于其电子性质及其在材料化学中的各种潜在应用。在这里,总结了具有吸电子取代基的并五苯衍生物的合成方法。这包括选择性和非选择性方法。此外,还分析和比较了电化学性质,即还原电位。作为主要结论,可以说电子亲和力大致与取代基的数量呈线性关系。最后,突出了取代的巴基碗在固态中的结构行为。这也可以对取代基的电子和空间性质对并五苯衍生物的分子结构和固态堆积的影响做出一般性陈述。