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核/壳乳液聚合工艺中乳化剂的定量研究
  • 期刊名称:高分子学报,2008(9):855-860
  • 时间:0
  • 分类:TQ316.334[化学工程—高聚物工业] TU561.62[建筑科学—建筑技术科学]
  • 作者机构:[1]湖南工业大学绿色包装与纳米生物技术应用重点实验室,株洲412008, [2]浙江大学高分子科学研究所,杭州310027
  • 相关基金:湖南省教育厅(项目号07C240)、国家自然科学基金(基金号20505020)资助项目和湖南省科技厅(项目号06FJ3037);
  • 相关项目:基于磁性纳米粒子分离与SQUID检测的超灵敏病菌与病毒的定量分析与应用研究
中文摘要:

以十二烷基硫酸钠(SDS)为乳化剂,采用多步种子乳液聚合方法制备了核/壳结构乳液,研究了乳化剂加入量以及加料速率对核壳乳液聚合的影响,并推导了核及壳乳液聚合阶段所需乳化剂量的计算公式.研究表明,当种子、核、壳乳液聚合阶段单体量分别为12g、50g和50g,种子乳液聚合阶段加入的乳化剂量为0.44g时,控制核、壳乳液聚合阶段乳化剂的加入量分别在0.64~2.07g及0.04~2.12g之间,且预乳化单体的滴加速度低于2.3g/min时,可以防止二次成核及新乳胶粒子的形成,制得粒径分布窄、核/壳结构明显的乳胶粒子.利用透射电镜(TEM)对所制备的核壳结构乳胶粒子的结构形态进行了验证,试验结果与理论预测结果一致.

英文摘要:

In order to prepare a core-shell structure latex with a narrow size distribution and without the secondary nucleation to form new latex particles,a method was given for calculating the amount of surfactant,sodium dodecyl sulfate(SDS),in the process of multi-step seeded semi-continuous emulsion polymerization.From the total area of soap adsorbed particles and the effective molecular surface area of the soap,the above quantities can be calculated.In this method,the number of particles was the weight of monomer divided by the average particle weight,the seed particle density and average particle size could be measured by weighing strips of particles of measured volume and TEM,and the effective molecular surface area of the soap could be determined by soap titration.The influence of the amount and dropping speed of surfactant in every polymerization stage on the particles structure was studied.The amount of surfactant needed in the second and third polymerization stage was decided by both the amount surfactant added in the seeded polymerization and the particle size of seeds.A core-shell latex was synthesized with a narrow size distribution and without secondary nucleation when the amount of monomer for the seed,core and shell was 12 g,50 g and 50 g,the amount of surfactant was 0.4 g,0.64~2.07 g and 0.04~2.12 g,respectively,and the dropping speed of pre-emulsified monomer was below 0.021 mol/min.The core-shell morphology,size distribution of the final latex were confirmed by TEM analysis.

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