Qiao Bo, Zeng Qinghong, Li Longyu
College of Polymer Science and Engineering, Sichuan University, Chengdu, 610065, People's Republic of China.
State Key Laboratory of Polymer Materials Engineering, Sichuan University, Chengdu, 610065, People's Republic of China.
Angew Chem Int Ed Engl. 2024 Nov 11;63(46):e202412839. doi: 10.1002/anie.202412839. Epub 2024 Sep 13.
Cyclodextrin-based polyrotaxanes (CD-PRs) are gaining attention for their dynamic sliding rings along the polymer axis, enabling various applications in molecular shuttles, drug delivery, and durable polymers with slidable cross-links. However, the conventional synthesis of CD-PRs with tunable threading ratios is typically laborious, time-consuming, and complicated, which limits their scalability and cost-effectiveness. Herein, we highlight the great potential of planetary centrifugal mixing, a process that significantly accelerates and simplifies the initial synthesis of polypseudorotaxanes (PPRs), followed by a thiol-ene click reaction as an efficient end-capping reaction for the synthesis of PRs. Notably, PRs synthesized with glutathione (GSH) as the end-capping reagent are in a metastable state, where GSH act as a molecular bumper that significantly prevent de-threading of α-CD rings at room temperature. Moreover, the rate of ring de-threading can be precisely controlled by heating, enabling the preparation of metastable PRs with tunable threading ratios over a wide range. The developed strategy is of great significance to the efficient synthesis of CD-PRs, thus marking a significant step towards their practical application in advanced functional materials and devices.
基于环糊精的聚轮烷(CD-PRs)因其沿聚合物轴的动态滑动环而受到关注,可用于分子穿梭、药物递送以及具有可滑动交联的耐用聚合物等各种应用。然而,传统合成具有可调穿线比的CD-PRs通常费力、耗时且复杂,这限制了它们的可扩展性和成本效益。在此,我们强调了行星离心混合的巨大潜力,该过程显著加速并简化了聚准轮烷(PPRs)的初始合成,随后通过硫醇-烯点击反应作为合成PRs的有效封端反应。值得注意的是,以谷胱甘肽(GSH)作为封端试剂合成的PRs处于亚稳态,其中GSH充当分子缓冲器,在室温下显著防止α-CD环的解绕。此外,通过加热可以精确控制环解绕的速率,从而能够在很宽的范围内制备具有可调穿线比的亚稳态PRs。所开发的策略对于CD-PRs的高效合成具有重要意义,从而朝着它们在先进功能材料和器件中的实际应用迈出了重要一步。