Langmuir. 2018 Jul 17;34(28):8365-8373. doi: 10.1021/acs.langmuir.8b00743. Epub 2018 Jul 6.
Owing to their capability of forming extensive hydrogen bondings and the facile introduction of chirality, cyclic dipeptides (CDPs) have gained great attention as scaffolds for functional supramolecules. Surprisingly, introduction of a photopolymerizable diacetylene (DA) moiety to the CDP afforded nanotubular structures with enhanced stability and reversible thermochromism. A series of CDP-containing DAs (CDP-DAs) are prepared by coupling 10,12-pentacosadiynoic acid with CDPs, cyclo(-Gly-Ser) and cis/trans cyclo(-Ser-Ser). Fabrication of CDP-DA self-assemblies in a polar chloroform and methanol solvent mixture affords nanotubes comprising single-wall and multiwall structures. The self-assembly behavior and morphology characteristic are examined by scanning electron microscopy and transmission electron microscopy. Next, X-ray diffraction analysis confirms well-ordered lamellar structures with a perfect agreement with the bilayer formation leading to the tubular structure via lamellar scrolling behavior. Upon UV irradiation, monomeric CDP-DA tubular assemblies result in the blue-colored CDP/polydiacetylene (PDA) nanotubes. Interestingly, CDP/PDA nanotubes exhibit a reversible blue-to-red color change for over 10 consecutive thermal cycles. The CDP-DA/PDA supramolecular system demonstrates potential applications in developing stimulus-responsive functional materials.
由于其形成广泛氢键的能力和易于引入手性,环状二肽 (CDP) 作为功能超分子的支架引起了极大的关注。令人惊讶的是,将可光聚合的二乙炔 (DA) 部分引入 CDP 中,得到了稳定性和热致变色性增强的管状结构。通过将 10,12-二十五碳二炔酸与 CDP、环(-Gly-Ser) 和顺/反环(-Ser-Ser) 偶联,制备了一系列含 CDP 的 DA (CDP-DA)。在极性氯仿和甲醇溶剂混合物中制备 CDP-DA 自组装体,得到由单壁和多壁结构组成的纳米管。通过扫描电子显微镜和透射电子显微镜研究了自组装行为和形态特征。接下来,X 射线衍射分析证实了具有良好层状结构的有序层状结构,与双层形成完全一致,通过层状卷曲行为导致管状结构。在 UV 照射下,单体 CDP-DA 管状组装体导致蓝色的 CDP/聚二乙炔 (PDA) 纳米管。有趣的是,CDP/PDA 纳米管在超过 10 个连续的热循环中表现出可逆的蓝到红颜色变化。CDP-DA/PDA 超分子体系在开发刺激响应功能材料方面具有潜在的应用。