The synthesis of bottlebrushes with improved longer side chains by combining grafting through and grafting from methods

Lifen Xiao, Xiaoming Zhu, Liang Li, Dongyang Lin, Geng Huang, Wei Li
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Abstract

Abstract Bottlebrushes have intensive applications in photonics, surfactants, supersoft elastomers, medical imaging, drug delivery and nanomaterials owing to their unique morphology and properties. While the traditional grafting from method required low monomer conversion to avoid gelation, and resulted shorter side chain length. Compared with the traditional grafting from method, the bottlebrushes with improved longer side chains were successfully prepared by combining grafting through and grafting from methods. In this approach, RAFT and ROMP polymerizations were used in sequence to synthesize a series of main chains: including PNB-PMA7, PNB-PMA13 and PNB-PMA25. RAFT polymerization was then used to prepare bottlebrushes with different kinds of main chains under the same conditions. In the meantime, homo-polymerization of PMA was appeared inevitably, which was related to the polymerization time. Owing to the greater molecular weight of PNB-PMA13 and PNB-PMA25, the polymerized solutions transformed into gel in shorter time, and resulted to the lower proportion of homo-polymerization (<11%). Compared with PNB-SCS as main chain, the side chain’s degree of polymerization increased from 41 to 80 when PNB-PMA13 was used as main chain. Graphical Abstract
通过接枝和接枝相结合的方法合成了具有改进侧链的瓶刷
摘要瓶刷由于其独特的形态和性能,在光子学、表面活性剂、超软弹性体、医学成像、药物输送和纳米材料等领域有着广泛的应用。而传统的接枝法为避免胶凝,单体转化率较低,侧链长度较短。与传统的接枝法相比,通过接枝法和接枝法相结合,成功地制备了具有更长的侧链的瓶刷。在该方法中,RAFT和ROMP聚合依次合成了一系列主链:包括PNB-PMA7, PNB-PMA13和PNB-PMA25。在相同的条件下,采用RAFT聚合法制备了不同主链的瓶刷。同时,聚丙烯酸甲酯的均相聚合不可避免地出现,这与聚合时间有关。由于PNB-PMA13和PNB-PMA25的分子量较大,聚合溶液转化成凝胶的时间较短,导致均聚比例较低(<11%)。与以PNB-SCS为主链相比,以PNB-PMA13为主链时,侧链的聚合度由41提高到80。图形抽象
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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