Wu Jing, Fang Fang, Lu Wen-Ya, Hou Jun-Li, Li Chuang, Wu Zong-Quan, Jiang Xi-Kui, Li Zhan-Ting, Yu Yi-Hua
State Key Laboratory of Bio-Organic and Natural Products Chemistry, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, 354 Fenglin Lu, Shanghai 200032, China.
J Org Chem. 2007 Apr 13;72(8):2897-905. doi: 10.1021/jo062523g. Epub 2007 Mar 10.
This paper describes the self-assembly of a new class of three-component dynamic [2]catenanes, which are driven or stabilized by intramolecular hydrogen bonding, coordination, and electrostatic interaction. One of the component molecules 2, consisting of an aromatic oligoamide spacer and two peripheral zinc porphyrin units, was designed to adopt a folded preorganized conformation, which is stabilized by consecutive intramolecular three-centered hydrogen bonds. Component molecule 3 is a linear secondary ammonium bearing two peripheral pyridine units, which was designed to form a 1:1 complex with 24-crown-8 (5). The 1H NMR and UV-vis experiments in CDCl3-CD3CN (4:1 v/v) revealed that, due to the preorganized U-shaped feature, 2 could efficiently bind 3 through the cooperative zinc-pyridine coordination to generate highly stable 1:1 complex 2.3. Adding 5 to the 1:1 solution of 2 and 3 led to the formation of dynamic three-component [2]catenane 2.3.5 as a result of the threading of 3 through 5. 1H NMR studies indicated that in the 1:1:1 solution (3 mM) [2]catenane 2.3.5 was generated in 55% yield at 25 degrees C. The yield was increased with the reduction of the temperature and [2]catenane could be produced quantitatively in a 1:1:2 solution ([2]=3 mM) at -13 degrees C. Replacing 3 with 1,2-bis(4,4'-bipyridinium)ethane (4) in the three-component solution could also give rise to similar dynamic [2]catenane 2.4.5 albeit in slightly lower yield.
本文描述了一类新型的三组分动态[2]连环烷的自组装过程,该过程由分子内氢键、配位作用和静电相互作用驱动或稳定。其中一个组分分子2由一个芳香族低聚酰胺间隔基和两个外围锌卟啉单元组成,设计为采用折叠的预组织构象,该构象通过连续的分子内三中心氢键得以稳定。组分分子3是一个带有两个外围吡啶单元的线性仲铵,设计为与24-冠-8(5)形成1:1配合物。在CDCl3-CD3CN(4:1 v/v)中的1H NMR和紫外可见光谱实验表明,由于预组织的U形特征,2能够通过锌-吡啶协同配位有效地结合3,生成高度稳定的1:1配合物2.3。向2和3的1:1溶液中加入5,由于3穿过5,导致形成动态三组分[2]连环烷2.3.5。1H NMR研究表明,在1:1:1溶液(3 mM)中,[2]连环烷2.3.5在25℃下的产率为55%。产率随温度降低而增加,在-13℃下,在1:1:2溶液([2]=3 mM)中可以定量生成[2]连环烷。在三组分溶液中用1,2-双(4,4'-联吡啶鎓)乙烷(4)取代3,也能生成类似的动态[2]连环烷2.4.5,尽管产率略低。