Saura-Sanmartin Adrian, Nicolas-Garcia Tomas, Pastor Aurelia, Quiñonero David, Alajarin Mateo, Martinez-Cuezva Alberto, Berna Jose
Department of Organic Chemistry, Faculty of Chemistry, University of Murcia, Regional Campus of International Excellence "Campus Mare Nostrum" 30100 Murcia Spain
Departamento de Química, Universidad de las Islas Baleares Crta de Valldemossa km 7.5 E-07122 Palma de Mallorca (Baleares) Spain.
Chem Sci. 2023 Mar 22;14(15):4143-4151. doi: 10.1039/d3sc00886j. eCollection 2023 Apr 12.
The synthesis of a ditopic interlocked building-block and its self-assembly into a cyclic dimer is reported herein. Starting from a thread with two recognition sites, a three-component clipping reaction was carried out to construct a bistable [2]rotaxane. A subsequent Suzuki cross-coupling reaction allowed the connection of a second ring to that of the rotaxane, affording a self-complementary ditopic system. NMR studies were carried out to identify a cyclic hetero[4]pseudorotaxane as the main supramolecular structure in solution. Its assembly is the result of a positive cooperativity operating in the hydrogen-bonding-driven assembly of this mechanically interlocked supramolecule, as revealed by computational studies. The increase of the polarity of the solvent allows the disruption of the intercomponent interactions and the disassembly of the hetero[4]pseudorotaxane into the two interlocked units. The disassembly of the cyclic dimer was also achieved through a Diels-Alder reaction over the fumaramide binding site of the thread, triggering the translational motion of the entwined macrocycle to an adjacent glycylglycine-based station and precluding the supramolecular dimerization. The competitive molecular recognition of a guest molecule by one of the self-templating counterparts of the dimer also led to the controlled disassembly of the hetero[4]pseudorotaxane.
本文报道了一种双位点互锁结构单元的合成及其自组装成环状二聚体的过程。从具有两个识别位点的线绳出发,进行了三组分剪切反应以构建双稳态[2]轮烷。随后的铃木交叉偶联反应使第二个环与轮烷的环相连,得到一个自互补的双位点体系。进行了核磁共振研究以确定环状杂[4]准轮烷是溶液中的主要超分子结构。如计算研究所揭示的,其组装是在这种机械互锁超分子的氢键驱动组装中起作用的正协同效应的结果。溶剂极性的增加会破坏组分间的相互作用,并使杂[4]准轮烷分解为两个互锁单元。环状二聚体的分解也通过在线绳的富马酰胺结合位点上进行狄尔斯-阿尔德反应实现,触发缠绕大环向相邻甘氨酰甘氨酸基位点的平移运动,从而阻止超分子二聚化。二聚体的一个自模板对应物对客体分子的竞争性分子识别也导致了杂[4]准轮烷的可控分解。