Center for Analysis and Synthesis, Department of Chemistry, Lund University, Lund SE-221 00, Sweden.
Institute of Advanced Synthesis, School of Chemistry and Molecular Engineering, Jiangsu National Synergetic Innovation Center for Advanced Materials, Nanjing Tech University, Nanjing 211816, China.
Nat Commun. 2017 Apr 12;8:14943. doi: 10.1038/ncomms14943.
The design and synthesis of new stimuli-responsive hydrogen-bonding monomers that display a diversity of self-assembly pathways is of central importance in supramolecular chemistry. Here we describe the aggregation properties of a simple, intrinsically C-symmetric enantiopure bicyclic cavity compound bearing a terminally unsubstituted ureidopyrimidinone fragment fused with a pyrrole moiety in different solvents and in the absence and presence of C and C guests. The tetrameric cyclic aggregate is selectively obtained in chlorinated solvents, where only part of the available hydrogen bonding sites are utilized, whereas in toluene or upon addition of C guests, further aggregation into tubular supramolecular polymers is achieved. The open-end cyclic assemblies rearrange into a closed-shell capsule upon introduction of C with an accompanied symmetry breaking of the monomer. Our study demonstrates that a C switch can be used to simultaneously control the topology and occupancy of tubular assemblies resulting from the aggregation of small monomers.
新的刺激响应氢键单体的设计和合成在超分子化学中具有重要意义,这些单体表现出多种自组装途径。在这里,我们描述了一种简单的、内在手性对称的、全碳对称的手性环状空腔化合物的聚集性质,该化合物带有末端未取代的脲嘧啶酮片段,与吡咯部分融合,在不同的溶剂中和在没有和存在 C 和 C 客体的情况下。在氯化溶剂中选择性地得到了四聚体环状聚集体,其中只利用了部分可用的氢键位点,而在甲苯中或加入 C 客体后,进一步聚合形成管状超分子聚合物。在引入 C 后,开放式环状组装通过伴随单体对称性的破坏而重新排列成封闭壳胶囊。我们的研究表明,C 开关可以同时控制由小分子聚集形成的管状组装体的拓扑结构和占有率。