Cai Xuetong, Ji Luyang, Tang Hao, Wang Rong, Feng Fude
Department of Polymer Science & Engineering, Key Laboratory of High Performance Polymer Material and Technology of Ministry of Education, School of Chemistry & Chemical Engineering, Nanjing University, Nanjing 210023, P. R. China.
Chem Commun (Camb). 2021 Nov 19;57(92):12313-12316. doi: 10.1039/d1cc04769h.
Studies of methylene blue-backboned polymers (MBPs) are hindered by the limited availability of polymerization methods. Herein, we developed an oxidative polymerization method to produce MBPs. The polymerization is performed in aqueous medium, and is organic solvent-free, heavy metal-free, time-efficient (on a timescale of minutes), and does not need pre-formed methylene blue chromophores. The effects of the alkyl chains of the MBPs on the photophysical properties and self-assembly behavior (., vesicles and nanorings) are significant, which highlights the possibility of controlling the MBP properties rationally tailoring the functionality of the MBP monomers prior to polymerization. Importantly, the self-assembly structures can be predicted using the dissipative particle dynamics (DPD) simulation method.
亚甲基蓝主链聚合物(MBPs)的研究因聚合方法有限而受阻。在此,我们开发了一种氧化聚合方法来制备MBPs。该聚合反应在水性介质中进行,无有机溶剂、无重金属、省时(以分钟计),且无需预先形成的亚甲基蓝发色团。MBPs的烷基链对其光物理性质和自组装行为(如囊泡和纳米环)有显著影响,这突出了在聚合前通过合理设计MBP单体的功能来控制MBP性质的可能性。重要的是,自组装结构可以使用耗散粒子动力学(DPD)模拟方法进行预测。