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Preparation of Ultralow Molecular Weight Poly(vinyl chloride) with Submicrometer Particles via Precipitation Polymerization 被引量:2
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作者 Peng Cui Chang-Tong Song +3 位作者 Xian-Hong Zhang Dong Chen Yu-Hong Ma Wan-Tai Yang 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2019年第7期646-653,共8页
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 proces... 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. 展开更多
关键词 Precipitation POLYMERIZATION VINYL CHLORIDE ultralow molecular weight PURE product
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分子链剪切技术制备超低分子量聚氧化乙烯 被引量:1
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作者 徐玄之 刘婷婷 +2 位作者 柴延军 孔猛 罗勇 《精细化工》 EI CAS CSCD 北大核心 2019年第11期2213-2219,共7页
采用紫外光对黏均分子量为1.5×10^6的聚氧化乙烯(PEO)进行了分子链剪切,得到了黏均分子量低于2.0×10^5的超低分子量PEO。考察了紫外光波长、功率、光源距离和反应温、湿度等因素对PEO紫外剪切速率的影响,并对制备得到的不同... 采用紫外光对黏均分子量为1.5×10^6的聚氧化乙烯(PEO)进行了分子链剪切,得到了黏均分子量低于2.0×10^5的超低分子量PEO。考察了紫外光波长、功率、光源距离和反应温、湿度等因素对PEO紫外剪切速率的影响,并对制备得到的不同低分子量PEO进行了结构分析和性能测试。结果表明:在紫外波长为185 nm、功率为75 W、光源距离为5 cm、环境温度为35℃、相对湿度为20%的较优反应条件下,反应2、3、4和5 h可分别制备黏均分子量为2.0×10^5、1.1×10^5、7.0×10^4和4.0×10^4的超低分子量PEO。随着降解时间的延长,PEO的分子量分布系数减小。PEO在紫外剪切过程中结构未发生明显改变,仅有少量甲酸酯生成。随着分子量的减小,PEO的熔点降低,结晶度增加。 展开更多
关键词 聚氧化乙烯 分子链剪切 超低分子量 紫外光 功能材料
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