国内精品国产三级国产在线专_欧美日韩在线播放一区二区_成人xxxx视频_欧美激情视频一区_色女人综合av_久久久亚洲影院_久久久久久九九_成人免费网站在线_日韩美女毛茸茸_狠狠干一区二区

Links
Contact Info.
  • Address:天津市南開區衛津路94號南開大學化學樓南樓302室
  • Zip:300071
  • Tel:022-23507193
  • Fax:
  • Email:[email protected]
Current Location :> Home > Publications > Text
Efficient one-pot synthesis of uniform, surface-functionalized, and “living” polymer microspheres by reverse atom transfer radical precipitation polymerization
writer:Yanpeng Jiao, Jingshuai Jiang, Hongtao Zhang, Huiqi Zhang*
keywords:Reverse atom transfer radical polyemrization, one-pot synthesis, uniform, "living" polymer microspheres
source:期刊
specific source:European Polymer Journal 2014, 54(1): 95-108.
Issue time:2014年

A facile, general, and efficient one-pot approach to obtain uniform, highly cross-linked, surface-functionalized, and "living" polymer microspheres by reverse atom transfer radical precipitation polymerization (RATRPP) is described for the first time, which is easily realized by introducing reverse atom transfer radical polymerization (reverse ATRP) mechanism into precipitation polymerization system. The polymerization parameters including stirring rate, polymerization temperature, monomer loading, initiator concentration, and polymerization scale and time showed considerable influence on the yields and morphologies of the polymer microspheres, which makes it convenient to tailor the particle sizes by tuning polymerization conditions. The general applicability of RATRPP was verified by preparing some uniform functional copolymer microspheres with incorporated 4-vinylpyridine, glycidyl methacrylate, and 2-hydroxyethyl methacrylate. Moreover, the resulting polymer microspheres proved to be "living" by their direct grafting of hydrophilic polymer brushes via surface-initiated ATRP. Furthermore, a mixed particle growth mechanism is proposed for RATRPP (i.e., a combined "grafting from" and "grafting to" mechanism works prior to the consumption of the conventional initiator and a "grafting from" mechanism is dominant afterwards), which is quite different from the "grafting to" particle growth mechanism in the traditional precipitation polymerization and "grafting from" mechanism in the normal ATRPP.