Liang Lijun, Li Xin
College of Life Information Science and Instrument Engineering, Hangzhou Dianzi University, Hangzhou, People's Republic of China.
Division of Theoretical Chemistry & Biology, School of Biotechnology, KTH Royal Institute of Technology, 10691, Stockholm, Sweden.
J Mol Model. 2018 Feb 12;24(3):51. doi: 10.1007/s00894-018-3591-1.
Formation of helical chiroptical self-assemblies via noncovalent interaction is a widely observed phenomenon in nature, the mechanism of which remains insufficiently understood. Employing an amphiphilic perylene-sugar dyad molecule (PBI-HAG) as an example, we report that the modulatable supramolecular helicity may emerge from an aggregating process that is dominated by competition between two types of noncovalent interaction: hydrogen bonding and π-π stacking. The interplay between these two driving forces, which is greatly affected by the solvent environment, determines the morphology the supramolecular assembly of PBI-HAGs. In particular, a non-layered supramolecular structure was formed in octane owing to stabilization effects of intermolecular hydrogen bonds, whereas a layered supramolecular structure was formed in water because of energetically favorable π-π stacking of aromatic rings. The formation of distinct supramolecular architectures in different solvents was reinforced by simulated circular dichroism spectra, which show opposite signals consistent with experimental observations. The results of this study could help us understand aggregation-induced supramolecular chirality of noncovalent self-assemblies. Graphical abstract Left Typical structures of amphiphilic perylene-sugar dyad (PBI-HAG) aggregates in different octane and water. Right Simulated CD and UV-Vis spectra of core PBIs aggregates in octane and water.
通过非共价相互作用形成螺旋手性光活性自组装体是自然界中广泛存在的现象,但其机制仍未得到充分理解。以两亲性苝 - 糖二元分子(PBI - HAG)为例,我们报道可调节的超分子螺旋性可能源于一个聚集过程,该过程由两种非共价相互作用之间的竞争主导:氢键和π - π堆积。这两种驱动力之间的相互作用受溶剂环境的极大影响,决定了PBI - HAGs超分子组装体的形态。特别地,由于分子间氢键的稳定作用,在辛烷中形成了非层状超分子结构,而在水中由于芳环间能量有利的π - π堆积形成了层状超分子结构。不同溶剂中独特超分子结构的形成通过模拟圆二色光谱得到了加强,模拟光谱显示出与实验观察结果一致的相反信号。本研究结果有助于我们理解非共价自组装体的聚集诱导超分子手性。图形摘要 左:两亲性苝 - 糖二元分子(PBI - HAG)在不同的辛烷和水中聚集的典型结构。右:核心苝类化合物在辛烷和水中聚集的模拟圆二色光谱和紫外 - 可见光谱。