Institut de Química Computacional i Catàlisi and Departament de Química, Universitat de Girona, Girona, Spain.
Institute of Organic Chemistry, Ulm University, Ulm, Germany.
Nat Chem. 2021 May;13(5):420-427. doi: 10.1038/s41557-021-00658-6. Epub 2021 Apr 15.
Molecular Russian dolls (matryoshkas) have proven useful for testing the limits of preparative supramolecular chemistry but applications of these architectures to problems in other fields are elusive. Here we report a three-shell, matryoshka-like complex-in which C sits inside a cycloparaphenylene nanohoop, which in turn is encapsulated inside a self-assembled nanocapsule-that can be used to address a long-standing challenge in fullerene chemistry, namely the selective formation of a particular fullerene bis-adduct. Spectroscopic evidence indicates that the ternary complex is sufficiently stable in solution for the two outer shells to affect the addition chemistry of the fullerene guest. When the complex is subjected to Bingel cyclopropanation conditions, the exclusive formation of a single trans-3 fullerene bis-adduct was observed in a reaction that typically yields more than a dozen products. The selectivity facilitated by this matryoshka-like approach appears to be a general phenomenon and could be useful for applications where regioisomerically pure C bis-adducts have been shown to have superior properties compared with isomer mixtures.
分子俄罗斯套娃(matryoshkas)已被证明可用于测试制备超分子化学的极限,但这些结构在其他领域的应用仍难以捉摸。在这里,我们报告了一种三壳层的类似俄罗斯套娃的复合物——其中 C 原子位于环对苯撑纳米环内,而环对苯撑纳米环又被包裹在自组装纳米胶囊内——可用于解决富勒烯化学中长期存在的一个挑战,即特定富勒烯双加成物的选择性形成。光谱证据表明,三元复合物在溶液中足够稳定,以至于两个外壳可以影响富勒烯客体的加成化学。当该复合物受到 Bingel 环丙烷化条件的作用时,观察到在典型生成十多种产物的反应中,仅形成一种顺式-3 富勒烯双加成物。这种类似俄罗斯套娃的方法所带来的选择性似乎是一种普遍现象,并且可能在需要具有比异构体混合物更优越性能的区域异构体纯 C 双加成物的应用中有用。