首页> 外文期刊>Journal of Applied Polymer Science >SURFACE AND INTERFACIAL FOURIER TRANSFORM INFRARED SPECTROSCOPIC STUDIES OF LATEXES .16. QUANTITATIVE ANALYSIS OF SURFACTANT IN MULTILAYERED FILMS
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SURFACE AND INTERFACIAL FOURIER TRANSFORM INFRARED SPECTROSCOPIC STUDIES OF LATEXES .16. QUANTITATIVE ANALYSIS OF SURFACTANT IN MULTILAYERED FILMS

机译:乳胶的表面和界面傅里叶变换红外光谱研究.16。多层膜中表面活性剂的定量分析

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Migration and concentration levels of sodium dioctylsulfosuccinate (SDOSS) surfactant molecules in 50%/50% styrene/butyl acrylate latex were detected at the film-substrate (F-S) and film-air (F-A) interfaces in mono- and double-layered films. For the purpose of quantitative analysis, absorption coefficients of the 1,056 and 1,046 cm(-1) bands attributed to the SO3-Na+... HOOC and SO3-Na+... H2O associations, respectively, were determined. Using group theory formalism, local geometries of the SO3-Na+ hydrophilic groups of SDOSS can be predicted. The analysis is extended to the 1,261 and 1,209 cm(-1) bands resulting from the S-O asymmetric stretching vibrations, due to the same SO3-Na+... HOOC and SO3Na+... H2O associations, and to the 1,290 and 1,236 cm(-1) bands, due to asymmetric stretching modes of hydrophobic tails of the SDOSS. By the use of polarization attenuated total reflectance Fourier transform infrared (ATR FT-IR) experiments, these studies show that hydrophilic SO3-Na+ ends on SDOSS are preferentially parallel to the film surface. At the same time, hydrophobic tails are perpendicular to the surface. The assessment of the amounts of SDOSS at the F-S and F-A interfaces was obtained by quantitative ATR FTIR analysis, which was extended to the silicone-modified double-layer latex films. In this case, the concentration of SDOSS molecules decreases as the depth of penetration increases. The highest concentrations of SDOSS molecules are detected at the shallowest depths near the surface of the top layer and the interfacial regions between the latex layers. (C) 1996 John Wiley & Sons, Inc. [References: 22]
机译:在单层和双层膜的膜-基底(F-S)和膜-空气(F-A)界面处检测到二辛基磺基琥珀酸钠(SDOSS)表面活性剂分子在50%/ 50%苯乙烯/丙烯酸丁酯胶乳中的迁移和浓度水平。为了进行定量分析,确定了分别归因于SO3-Na + ... HOOC和SO3-Na + ... H2O缔合的1,056和1,046 cm(-1)谱带的吸收系数。使用组理论形式主义,可以预测SDOSS的SO3-Na +亲水基团的局部几何形状。由于相同的SO3-Na + ... HOOC和SO3Na + ... H2O缔合,由于SO不对称拉伸振动导致的分析扩展到了1,261和1,209 cm(-1)带,并扩展到1,290和1,236 cm(-1) -1)条带,这是由于SDOSS疏水尾部的不对称拉伸模式所致。通过使用偏振衰减全反射傅立叶变换红外(ATR FT-IR)实验,这些研究表明SDOSS上的亲水SO3-Na +末端优先平行于薄膜表面。同时,疏水尾部垂直于表面。通过定量ATR FTIR分析获得了F-S和F-A界面上SDOSS含量的评估,该分析扩展到了有机硅改性的双层胶乳薄膜。在这种情况下,SDOSS分子的浓度会随着渗透深度的增加而降低。在顶层表面和乳胶层之间的界面区域附近最浅的深度处检测到最高浓度的SDOSS分子。 (C)1996 John Wiley&Sons,Inc. [参考:22]

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