1.中国科学院上海原子核所纳米生物医药研究室 上海 201800
李威,男,1973年10月出生,1997年毕业于合肥工业大学化工学院高分子化学与物理专业,现为中国科学院上海原子核研究所硕士研究生
王文峰
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李威, 王文锋, 钱素萍, 等. 纳米聚N—异丙基丙烯酰胺微凝胶的光引发聚合[J]. 辐射研究与辐射工艺学报, 2002,20(2):118-122.
LI Wei, WANG Wenfeng, QIAN Suping, et al. NANO POLY (N-ISOPROPYLACRYLAMIDE) MICROGEL POLYMERIZATION INITIATED BY LIGHT[J]. Journal of Radiation Research and Radiation Processing, 2002,20(2):118-122.
选择具有温敏性的高分子单体N—异丙基丙烯酰胺(N—isopropylacrylamide,NIPAM)为主单体,N,N'—亚甲基双丙烯酰胺(methylenebisacrylamide,MBA)为交联剂,运用光引发无皂乳液聚合的方法合成出粒径小于100nm的高分子微凝胶,并研究了在改变体系组成和条件时微凝胶粒径的变化。结果显示,在乳化剂临界胶束浓度以下,随着乳化剂浓度的提高,微凝胶粒子的粒径不断减小且趋向稳定;相比于热引发,产生的微凝胶具有较高的单分散性而且粒径较小。
Stable temperature sensitive polymer nanometer gel was prepared by the soap—less emulsion polymerization, which initiated by light and the diameter was successful controlled less than 100nm. The reactive system were composed by the aqueous main monomer N—isopropylacrylamide and methylenebisacrylamide, MBA. The effects of system compose and conditions on the diameter were studied. The result indicated that under the CMC,the gel diameter will continue declining and be invariable finally with increase the emulsifier concentration. Higher poly dispersity and smaller particles can be got in the polymerization initiated by light compared to the therm initiate.
无皂乳液聚合微凝胶纳米高分子光引发
Soap—less emulsion polymerizationMicrogelTemperature sensitiveLight initiate
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