期刊文献+

Preparation of Ultralow Molecular Weight Poly(vinyl chloride) with Submicrometer Particles via Precipitation Polymerization 被引量:2

Preparation of Ultralow Molecular Weight Poly(vinyl chloride) with Submicrometer Particles via Precipitation Polymerization
原文传递
导出
摘要 Poly(vinyl chloride), with ultralow molecular weight, produced by free radical polymerization either at high temperature or in the presence of chain transfer agents, is widely used as special resins and polymer process additives. This paper reports a new process, called self-stabilized precipitation polymerization, in which the polymerization of vinyl chloride monomer (VCM) is conducted in hydrocarbon diluents without addition of any suspending agent or emulsifier. The merits of this novel strategy include:(1) PVC resins with ultra-low number-average molecular weight (Mn) from 4000 to 15000, which is much lower than Mn of those prepared by conventional suspension and emulsion polymerizations,(2) sub-micrometer PVC particles with near spherical morphology, and (3) the very simple post-polymerization separation process. Under mild stirring, polymerization proceeds stably and smoothly. The influences of main process factors, such as solvents, initiator and monomer concentrations, polymerization time, and temperature on both particle morphology and Mn of the polymer products are investigated systematically. The molar ratio of-CH2-CHCl-/-CH=CH-CH2CHCl, a good indicator of structural defects, is about 1000/0.1 which means the low molecular weights do not result from chain transfer to the monomers. Then the mechanism of this polymerization is proposed. In summary, this novel polymerization technology provides a straightforward method for preparing PVC particulate products with low Mn. Poly(vinyl chloride), with ultralow molecular weight, produced by free radical polymerization either at high temperature or in the presence of chain transfer agents, is widely used as special resins and polymer process additives. This paper reports a new process,called self-stabilized precipitation polymerization, in which the polymerization of vinyl chloride monomer(VCM) is conducted in hydrocarbon diluents without addition of any suspending agent or emulsifier. The merits of this novel strategy include:(1) PVC resins with ultra-low number-average molecular weight(Mn) from 4000 to 15000, which is much lower than Mn of those prepared by conventional suspension and emulsion polymerizations,(2) sub-micrometer PVC particles with near spherical morphology, and(3) the very simple post-polymerization separation process. Under mild stirring, polymerization proceeds stably and smoothly. The influences of main process factors, such as solvents, initiator and monomer concentrations, polymerization time, and temperature on both particle morphology and Mn of the polymer products are investigated systematically. The molar ratio of ―CH2―CHCl―/―CH=CH―CH2 CHCl, a good indicator of structural defects, is about 1000/0.1 which means the low molecular weights do not result from chain transfer to the monomers. Then the mechanism of this polymerization is proposed. In summary, this novel polymerization technology provides a straightforward method for preparing PVC particulate products with low Mn.
出处 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2019年第7期646-653,共8页 高分子科学(英文版)
基金 financially supported by the National Natural Science Foundation of China (No. 51521062)
关键词 Precipitation POLYMERIZATION VINYL CHLORIDE ULTRALOW molecular WEIGHT PURE product Precipitation polymerization Vinyl chloride Ultralow molecular weight Pure product
  • 相关文献

参考文献1

二级参考文献17

  • 1包永忠 翁志学 黄志明.高等学校化学工程学报[J],2002,16(6):1508-1517.
  • 2Xie T. Y. , Hamielec A. E. , Wood P, E, et al.. Polymer[J], 1991, 32(3): 537--557.
  • 3Cebollada A. F., Schmidt M. J,, Farber J. N. et al.. J. Appl. Polym. Sci. [J], 1989, 37: 145--166.
  • 4Xie T. Y. , Hamielec A. E. , Wood P. E. et al.. Polymer[J], 1991, 32(6): 1098--1110.
  • 5Starnes W. H. , Schilling F. C. , Plitz I. M. et al., Macromol. [J], 1983, 16:790--807.
  • 6Hjertberg T. , Sorvik E. M.. Polymer[J], 1983, 24:673--684.
  • 7Xie T, Y. , Hamielec A. E. , Wood P. E. et al.. Polymer[J], 1991, 32(9): 1696--1702.
  • 8Butter G. , Particulate Nature of PVC[M], London: Applied Sci. Pub. , 1982.
  • 9Burgess R. H.. Manufacture and Processing of PVC[M], London: Applied Sci. Pub. , 1982.
  • 10Nippom Enbi Hanbai. JP 6 271 609[P], 1994.

共引文献2

同被引文献3

引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部