Shi Jun-Tao, Chen Xian-Hui, Peng Yuan-Yuan, Wang Gui-Ping, Du Guang-Yan, Li Quan
College of Materials Science and Engineering, Zhejiang University of Technology, Hangzhou, 310014, P. R. China.
College of Chemistry and Chemical Engineering, Southwest Petroleum University, Chengdu, 610500, P. R. China.
Chemistry. 2023 Oct 23;29(59):e202302132. doi: 10.1002/chem.202302132. Epub 2023 Sep 14.
Advanced Organic Chemical Materials Co-constructed Mechanically bonded amphiphiles (MBAs), also known as mechanically interlocked molecules (MIMs), have emerged as an important kind of functional building block for the construction of artificial molecular machines and soft materials. Herein, a novel MBA, i. e., bistable [2]rotaxane H2 was designed and synthesized. In the solution state, H2 demonstrated pH and metal ion-responsive emissions due to the presence of a distance-dependent photoinduced electron transfer (PET) process and the fluorescence resonance energy transfer (FRET) process, respectively. Importantly, the amphiphilic feature of H2 has endowed it with unique self-assembly capability, and nanospheres were obtained in a mixed H O/CH CN solvent. Moreover, the morphology of H2 aggregates can be tuned from nanospheres to vesicles due to the pH-controlled shuttling motion-induced alternation of H2 amphiphilicity. Interestingly, larger spheres with novel pearl-chain-like structures from H2 were observed after adding stoichiometric Zn . In particular, H2 shows pH-responsive emissions in its aggregation state, allowing the visualization of the shuttling movement by just naked eyes. It is assumed that the well-designed [2]rotaxane, and particularly the proposed concept of MBA shown here, will further enrich the families of MIMs, offering prospects for synthesizing more MIMs with novel assembly capabilities and bottom-up building dynamic smart materials with unprecedented functions.
先进有机化学材料共同构建的机械键合两亲分子(MBA),也被称为机械互锁分子(MIM),已成为构建人工分子机器和软材料的一种重要功能构建单元。在此,设计并合成了一种新型的MBA,即双稳态[2]轮烷H2。在溶液状态下,由于分别存在距离依赖性光致电子转移(PET)过程和荧光共振能量转移(FRET)过程,H2表现出对pH和金属离子响应的发射。重要的是,H2的两亲特性赋予了它独特的自组装能力,并且在H2O/CH3CN混合溶剂中获得了纳米球。此外,由于pH控制的穿梭运动引起H2两亲性的改变,H2聚集体的形态可以从纳米球调整为囊泡。有趣的是,加入化学计量的Zn2+后观察到了具有新型珍珠链状结构的来自H2的更大球体。特别地,H2在其聚集状态下表现出pH响应发射,仅通过肉眼就能实现穿梭运动的可视化。据推测,精心设计的[2]轮烷,尤其是这里展示的MBA概念,将进一步丰富MIM的家族,为合成更多具有新型组装能力的MIM以及自下而上构建具有前所未有的功能的动态智能材料提供前景。