首页> 外文期刊>Journal of Applied Polymer Science >SURFACE AND INTERFACIAL FOURIER TRANSFORM INFRARED SPECTROSCOPIC STUDIES OF LATEXES .15. ORIENTATION OF THE SODIUM DIOCTYL SULFOSUCCINATE SURFACTANT MOLECULES IN CORE/SHELL-TYPE STYRENE BUTYL ACRYLATE LATEX FILMS AT THE FILM-AIR AND FILM-SUBSTRATE IN
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SURFACE AND INTERFACIAL FOURIER TRANSFORM INFRARED SPECTROSCOPIC STUDIES OF LATEXES .15. ORIENTATION OF THE SODIUM DIOCTYL SULFOSUCCINATE SURFACTANT MOLECULES IN CORE/SHELL-TYPE STYRENE BUTYL ACRYLATE LATEX FILMS AT THE FILM-AIR AND FILM-SUBSTRATE IN

机译:乳胶的表面和界面傅里叶变换红外光谱研究.15。膜/膜和膜底物中核/壳型苯乙烯丙烯酸丁酯乳胶膜中二硫代磺酸钠表面活性剂分子的取向。

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This study addresses the effect of particle structure and composition on the mobility and orientation of sodium dioctyl sulfosuccinate (SDOSS) surfactant molecules in polybutyl acrylate/polystyrene core/shell-type latex films near the film-air (F-A) and film-substrate (F-S) interfaces. In an effort to determine how the surface tension of the substrate influences the migration and orientation of the SDOSS surfactant molecules, polytetrafluoroethylene (PTFE) and liquid Hg substrates were used. It appears that, as the concentration of styrene monomer in the latex increases, SDOSS migrates toward the F-A and F-S interfaces. As the surface tension of the substrate changes from 18 mN/m in PTFE to 400 mN/m for liquid Hg, the surfactant also migrates toward the two interfaces. For the latex particles composed of 50%/50% styrene-butyl acrylate (Sty-BA) latex copolymer, the hydrophilic SO3-Na+ groups of SDOSS surfactant are present primarily near the F-A interface, and they appear to be mostly parallel to the surface for the films cast on the PTFE surface. For the latex films cast on the liquid Hg surface, the SDOSS hydrophilic surfactant groups are found to be preferentially parallel near the F-A interface and perpendicular near the F-S interface. These studies indicate that the surfactant concentration and its orientation throughout the latex film change as a function of the initial monomer composition and the surface tension of the substrate. Furthermore, the SDOSS concentration appears to vary with depth into the latex interfaces. (C) 1996 John Wiley & Sons, Inc. [References: 13]
机译:这项研究解决了膜-空气(FA)和膜-基材(FS)附近的聚丙烯酸丁酯/聚苯乙烯核/壳型胶乳薄膜中颗粒结构和组成对磺基琥珀酸二辛酯钠表面活性剂分子的迁移率和取向的影响。 )界面。为了确定基材的表面张力如何影响SDOSS表面活性剂分子的迁移和取向,使用了聚四氟乙烯(PTFE)和液态Hg基材。看起来,随着胶乳中苯乙烯单体浓度的增加,SDOSS向F-A和F-S界面迁移。当基材的表面张力从PTFE中的18 mN / m变为液体Hg的400 mN / m时,表面活性剂也会向两个界面迁移。对于由50%/ 50%苯乙烯/丙烯酸正丁酯(Sty / n-BA)乳胶共聚物组成的乳胶颗粒,SDOSS表面活性剂的亲水性SO3-Na +基团主要存在于FA界面附近,并且似乎主要是在FA界面附近。平行于在PTFE表面浇铸的薄膜的表面。对于流延在液态Hg表面的乳胶薄膜,发现SDOSS亲水性表面活性剂基团在F-A界面附近优先平行,在F-S界面附近垂直。这些研究表明,表面活性剂的浓度及其在整个乳胶膜中的取向随初始单体组成和基材的表面张力而变化。此外,SDOSS浓度似乎随着进入乳胶界面的深度而变化。 (C)1996 John Wiley&Sons,Inc. [参考:13]

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