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SiO_2/PVAc无机-有机复合微球的合成及其膜性能研究
引用本文:唐琴琼,文男庚,陈敏.SiO_2/PVAc无机-有机复合微球的合成及其膜性能研究[J].高分子学报,2008,0(9):843-848.
作者姓名:唐琴琼  文男庚  陈敏
作者单位:1. 湖北大学材料科学与工程学院,武汉,430062
2. 复旦大学材料科学系,上海,200433
摘    要:以纳米二氧化硅粒子(SiO2)为稳定剂,在少量反应型阴离子乳化剂——烯丙氧基羟丙磺酸钠(HAPS)作助稳定剂的情况下,制备了具有草莓型结构的二氧化硅/聚醋酸乙烯酯(SiO2/PVAc)无机-有机纳米复合微球.研究表明,纳米SiO2与PVAc的氢键作用是形成这种单分散草莓型SiO2/PVAc无机-有机纳米复合微球的关键.透射电镜(TEM)观察显示,纳米SiO2吸附在PVAc表面,形成草莓型结构.讨论了纳米二氧化硅溶胶的种类和用量、乳化剂种类对复合微球形态及其膜性能的影响,并讨论了复合微球的形成机理.

关 键 词:无机-有机纳米复合微球  纳米二氧化硅  聚醋酸乙烯酯  氢键
收稿时间:2007-11-16

SYNTHESIS AND APPLICATION OF SiO2/PVAc INORAGNIC-ORGANIC COMPOSITE PARTICLES
TANG Qinqiong,WEN Nangeng,CHEN Min.SYNTHESIS AND APPLICATION OF SiO2/PVAc INORAGNIC-ORGANIC COMPOSITE PARTICLES[J].Acta Polymerica Sinica,2008,0(9):843-848.
Authors:TANG Qinqiong  WEN Nangeng  CHEN Min
Institution:College of Chemistry and Materials Science, Hubei University, Wuhan 430062 Department of Materials Science, Fudan University, Shanghai 200433
Abstract:This paper presented a method for the preparation of raspberry-like inorganic-organic composite particles with poly(vinyl acetate)(PVAc) as core and nanosilica particles as shell.A small amount of anionic reactive surfactant,3-allyloxy-2-hydroxy-1-propanesulfonic acid sodium salt(HAPS) was used as co-stabilizer.Composite particles were obtained via the free radical copolymerization of VAc with HAPS in the presence of aqueous nano-silica dispersions.At the same time,nanosilica particles were deposited onto the surfaces of organic particles via the formation of hydrogen bonds between nanosilica particles and PVAc particles.It turned out that only acidic silica sol could stabilize the latex.Samples prepared using basic silica sol(modified with ammonia) showed large aggregates during the polymerization.At the same time,a very small amount of various surfactants,e.g.,nonionic surfactant(OP-10,OP-40),anionic surfactant(SDS,HAPS) and cationic surfactant(MTC,CTAB) were tried for the synthesis of SiO_2/PVAc latex in combination with nanosilica particles as stabilizer,it was found that only HAPS could act as the co-stabilizer to ensure the polymerization stability,which maybe due to the electrostatic interaction between nanosilica particles and the surfactant.TEM showed that the obtained composite particles have typical raspberrylike morphology,indicating the hydrogen bonds between nanosilica particles and PVAc were strong enough for the formation of long-stable composite spheres.It was found that the average particle size of SiO_2/PVAc composite particles ranged from 200 nm to 500 nm and tended to decrease with increasing silica content from 3 g to 21 g,which had the same behavior as traditional emulsifiers.At the same time,The latexes prepared by 3 g and 9 g of silica only exhibited slight shear-thinning behavior(very close to the Newtonian fluid).However,when 15 g or 21 g silica were employed,the latexes displayed a strong shear-thinning behavior.Based on the stabilization mechanism presented in our previous work,it was believed that some hydrogen bonds formed between hydroxyl groups of the silica particles and increased the viscosity of the latex.However,the hydrogen bonds were easily cleaved under mechanical stirring.
Keywords:Inorganic-organic nanocomposites particles  Silica nanoparticles  PVAc  Hydrogen bonds
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