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HIGH SOLIDS-CONTENT NANOSIZE POLYMER LATEXES MADE BY A MODIFIED EMULSION COPOLYMERIZATION
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作者 ZHANG Yuying GUO Tianying +2 位作者 HAO Guangjie SONG Maodao Zhang Banghua 《Chinese Journal of Reactive Polymers》 2003年第1期10-16,共7页
Polymer nanoparticles were prepared in the methyl methacrylate (MMA)/buty lmethacrylate (BA) emulsion copolymerization process by a modified microemulsion copolymerization method. 2-Hydroxyethyl methacrylate(HEMA), ac... Polymer nanoparticles were prepared in the methyl methacrylate (MMA)/buty lmethacrylate (BA) emulsion copolymerization process by a modified microemulsion copolymerization method. 2-Hydroxyethyl methacrylate(HEMA), acrylate (AA) and methyl acrylate (MAA) were used as reactive cosurfactants. With this process high polymer: surfactant weight ratios (40:1 or greater),relatively concentrated (~30wt. %) latexes and small (~60nm) particle diameters were obtained.Properties of the latexes were characterized by TEM, DSC, dynamic light scattering, and IR spectroscopy. 展开更多
关键词 纳米聚合物 橡胶 改性乳液 乳液共聚 丙烯酸酯 微滴乳状液 2-羟乙基甲基丙烯酸酯 甲基丙烯酸酯
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Interactions between crystal violet and AOT in aqueous solutions and in AOT/isooc- tane/water microemulsions
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作者 HAOXiaojuan ANXueqin +1 位作者 CHENZhiyun SHENWeiguo 《Chinese Science Bulletin》 SCIE EI CAS 2004年第4期317-320,共4页
The absorbance of crystal violet (CV) in a se-ries of aqueous solutions and a series of sodium bis(2-ethyl- hexyl) sulfosuccinate (AOT)/isooctane/water microemulsions has been determined. Association models have been ... The absorbance of crystal violet (CV) in a se-ries of aqueous solutions and a series of sodium bis(2-ethyl- hexyl) sulfosuccinate (AOT)/isooctane/water microemulsions has been determined. Association models have been used to analyse the experimental data to obtain the association con-stants of CV and AOT in the above two media. It was found that about up to 57% CV was associated by AOT in AOT/ isooctane/water microemulsions, which reduced the reaction rate of alkaline fading of crystal violet in the microemulsions. 展开更多
关键词 结晶紫 AOT 异辛烷 微滴乳状液 CV 热动力学
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