Liu Yu, Zhao Yan-Li, Chen Yong, Guo Dong-Sheng
Department of Chemistry, State Key Laboratory of Elemento-Organic Chemistry, Nankai University, Tianjin 300071, P. R. China.
Org Biomol Chem. 2005 Feb 21;3(4):584-91. doi: 10.1039/b415946b. Epub 2005 Jan 10.
To further reveal the factors governing the supramolecular assembly of beta-cyclodextrin (beta-CD) inclusion complexes, two aggregates (1 and 2) were prepared from the inclusion complexes of beta-CD with 4-hydroxyazobenzene and 4-aminoazobenzene, respectively, and their binding behavior were investigated by means of X-ray analysis, UV-vis, NMR, and circular dichroism spectra in both solution and the solid state. The obtained results indicated that the beta-CD/4-hydroxyazobenzene complex 1 could form head-to-head dimers (triclinic system, space group P1) in the solid state, which were further self-assembled to a linear supramolecular architecture by the intra- and interdimer hydrogen bond interactions as well as the intradimer pi-pi interactions. However, when the included guest 4-hydroxyazobenzene was switched to a 4-aminoazobenzene, the resultant beta-CD/4-aminoazobenzene complex 2 (monoclinic system, space group P2(1)) could be self-assembled to a wave-type supramolecular aggregate under similar conditions. Furthermore, the combination of crystallographic and spectral investigations jointly revealed the inclusion complexation geometry of beta-CD with 4-hydroxyazobenzene and 4-aminoazobenzene in both solution and the solid state, which demonstrated that the disparity of substituents in the azobenzenes played an important role in the inclusion complexation and molecular assembly, affecting not only the structural features of aggregates but also the binding abilities of azobenzenes with beta-CD.
为了进一步揭示控制β-环糊精(β-CD)包合物超分子组装的因素,分别由β-CD与4-羟基偶氮苯和4-氨基偶氮苯的包合物制备了两种聚集体(1和2),并通过X射线分析、紫外可见光谱、核磁共振光谱和圆二色光谱在溶液和固态下研究了它们的结合行为。所得结果表明,β-CD/4-羟基偶氮苯复合物1在固态下可形成头对头二聚体(三斜晶系,空间群P1),通过二聚体内和二聚体间的氢键相互作用以及二聚体内的π-π相互作用进一步自组装成线性超分子结构。然而,当所含客体4-羟基偶氮苯换成4-氨基偶氮苯时,所得的β-CD/4-氨基偶氮苯复合物2(单斜晶系,空间群P2(1))在相似条件下可自组装成波浪型超分子聚集体。此外,晶体学和光谱研究相结合共同揭示了β-CD与4-羟基偶氮苯和4-氨基偶氮苯在溶液和固态下的包合络合几何结构,这表明偶氮苯中取代基的差异在包合络合和分子组装中起重要作用,不仅影响聚集体的结构特征,还影响偶氮苯与β-CD的结合能力。