Li Jing, Shi Qiang, Han Ying, Chen Chuan-Feng
Beijing National Laboratory for Molecular Sciences, CAS Key Laboratory of Molecular Recognition and Function, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
Beilstein J Org Chem. 2019 Jul 26;15:1795-1804. doi: 10.3762/bjoc.15.173. eCollection 2019.
2,6-Helic[6]arene and its derivatives were synthesized, and their complexation with 1,1'-dimethyl-4,4'-bipyridinium and protonated 4,4'-bipyridinium salts were investigated in detail. It was found that the helic[6]arene and its derivatives could all form 1:1 complexes with both 1,1'-dimethyl-4,4'-bipyridinium salts and protonated 4,4'-bipyridinium salts in solution and in the solid state. Especially, the helic[6]arene and its derivatives containing 2-hydroxyethoxy or 2-methoxyethoxy groups exhibited stronger complexation with the guests than the other helic[6]arene derivatives for the additional multiple hydrogen bonding interactions between the hosts and the guests, which were evidenced by H NMR titrations, X-ray crystal structures and DFT calculations. Moreover, it was also found that the association constants ( ) of the complexes could be significantly enhanced with larger counteranions of the guests and in less polar solvents. Furthermore, the switchable complexation between the helic[6]arene and protonated 4,4'-bipyridinium salt could be efficiently controlled by acids and bases.
合成了2,6-螺旋[6]芳烃及其衍生物,并详细研究了它们与1,1'-二甲基-4,4'-联吡啶鎓盐和质子化4,4'-联吡啶鎓盐的络合作用。结果发现,螺旋[6]芳烃及其衍生物在溶液和固态中均能与1,1'-二甲基-4,4'-联吡啶鎓盐和质子化4,4'-联吡啶鎓盐形成1:1的络合物。特别是,含有2-羟基乙氧基或2-甲氧基乙氧基的螺旋[6]芳烃及其衍生物与客体的络合作用比其他螺旋[6]芳烃衍生物更强,这是由于主体与客体之间存在额外的多重氢键相互作用,1H NMR滴定、X射线晶体结构和密度泛函理论(DFT)计算证明了这一点。此外,还发现随着客体抗衡阴离子增大以及在极性较小的溶剂中,络合物的缔合常数( )会显著提高。此外,螺旋[6]芳烃与质子化4,4'-联吡啶鎓盐之间的可切换络合作用可通过酸和碱有效控制。