...
首页> 外文期刊>Macromolecules >RAFT Dispersion Polymerization in Nonpolar Media: Polymerization of 3-Phenylpropyl Methacrylate in n-Tetradecane with Poly(stearyl methacrylate) Homopolymers as Macro Chain Transfer Agents
【24h】

RAFT Dispersion Polymerization in Nonpolar Media: Polymerization of 3-Phenylpropyl Methacrylate in n-Tetradecane with Poly(stearyl methacrylate) Homopolymers as Macro Chain Transfer Agents

机译:非极性介质中的RAFT分散聚合:甲基丙烯酸3-苯基丙酯在正十八烷中与聚(甲基丙烯酸硬脂基酯)均聚物作为大分子链转移剂的聚合

获取原文
获取原文并翻译 | 示例

摘要

Poly(stearyl methacrylate) (PSMA) homopolymers, prepared by RAFT radical polymerization, have been employed in the RAFT dispersion polymerization (RAFTDP) of 3-phenylpropyl methacrylate (PPMA) in n-tetradecane. RAFTDPs yielded block copolymers with narrow molecular weight distributions and tunable compositions and allowed for ready access to different polymorphic nanoparticle phases. Polymerization of PPMA at 20 wt %, for a fixed PSMA average degree of polymerization (X (n) over bar) of 19, allowed for the in situ preparation of soft matter nano-objects with spherical, worm, and vesicular morphologies. For a fixed block copolymer composition increasing total solids (from 10 to 40 wt %) favored the formation of nanoparticles with higher ordered morphologies. For block copolymer samples that formed soft physical gels at ambient temperature, a macroscopic thermoreversible degelationgelation phenomenon was observed. The fundamental reason for this was a worm-to-sphere morphology transition that was facilitated, in part, by the low glass transition temperature of the core-forming PPPMA block and an associated increase in the solvation of the core with increasing temperature. Finally, we note that degelation can also be effected by simple dilution with this macroscopic change now due to simple worm disentanglement and not a fundamental morphology transition.
机译:通过RAFT自由基聚合制备的聚(甲基丙烯酸硬脂基酯)(PSMA)均聚物已用于正十四烷中的甲基丙烯酸3-苯基丙酯(PPMA)的RAFT分散聚合(RAFTDP)中。 RAFTDP产生具有窄分子量分布和可调组成的嵌段共聚物,并可以随时进入不同的多晶型纳米粒子相。以20 wt%的PPMA进行聚合,以固定的PSMA平均聚合度(bar上的X(n))为19,可以原位制备具有球形,蠕虫和水泡形态的软质纳米物体。对于固定的嵌段共聚物组合物,增加的总固体(从10到40wt%)有利于形成具有更高有序形态的纳米颗粒。对于在环境温度下形成柔软的物理凝胶的嵌段共聚物样品,观察到宏观的热可逆凝胶化现象。造成这种情况的根本原因是蠕虫到球体的形态转变,部分原因是,形成核的PPPMA嵌段的玻璃化转变温度低,并且随着温度的升高,核的溶剂化也随之增加。最后,我们注意到,由于简单的蠕虫解缠,而不是基本的形态学转变,通过这种宏观变化,也可以通过简单的稀释来实现脱胶。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号