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表面活性剂/聚合物泡沫的多尺度微观结构、组成与稳定性

Multiscale Microstructure, Composition, and Stability of Surfactant/Polymer Foams.

作者信息

Perticaroli Stefania, Herzberger Jana, Sun Yiping, Nickels Jonathan D, Murphy Ryan P, Weigandt Katie, Ray Paula J

机构信息

The Procter and Gamble Company, Research and Development, Mason Business Center, Cincinnati, Ohio 45040, United States.

Department of Chemical and Environmental Engineering, University of Cincinnati, Cincinnati, Ohio 45221, United States.

出版信息

Langmuir. 2020 Dec 8;36(48):14763-14771. doi: 10.1021/acs.langmuir.0c02704. Epub 2020 Nov 24.

Abstract

Inclusion of polymer additives is a known strategy to improve foam stability, but questions persist about the amount of polymer incorporated in the foam and the resulting structural changes that impact material performance. Here, we study these questions in sodium dodecyl sulfate (SDS)/hydroxypropyl methylcellulose (HPMC) foams using a combination of flow injection QTOF mass spectrometry and small-angle neutron scattering (SANS) measurements leveraging contrast matching. Mass spectrometry results demonstrate polymer incorporation and retention in the foam during drainage by measuring the HPMC-to-SDS ratio. The results confirm a ratio matching the parent solution and stability over the time of our measurements. The SANS measurements leverage precise contrast matching to reveal detailed descriptions of the micellar structure (size, shape, and aggregation number) along with the foam film thickness. The presence of HPMC leads to thicker films, correlating with increased foam stability over the first 15-20 min after foam production. Taken together, mass spectrometry and SANS present a structural and compositional picture of SDS/HPMC foams and an approach amenable to systematic study for foams, gathering mechanistic insights and providing formulation guidance for rational foam design.

摘要

添加聚合物添加剂是提高泡沫稳定性的一种已知策略,但关于泡沫中聚合物的掺入量以及由此产生的影响材料性能的结构变化仍存在疑问。在此,我们使用流动注射QTOF质谱和小角中子散射(SANS)测量相结合的方法,利用对比匹配技术,研究十二烷基硫酸钠(SDS)/羟丙基甲基纤维素(HPMC)泡沫中的这些问题。质谱结果通过测量HPMC与SDS的比例,证明了在排水过程中聚合物在泡沫中的掺入和保留。结果证实了在我们的测量时间内,该比例与母液匹配且具有稳定性。SANS测量利用精确的对比匹配来揭示胶束结构(尺寸、形状和聚集数)以及泡沫膜厚度的详细描述。HPMC的存在导致膜更厚,这与泡沫产生后最初15 - 20分钟内泡沫稳定性的提高相关。综合来看,质谱和SANS呈现了SDS/HPMC泡沫的结构和组成情况,以及一种适用于泡沫系统研究的方法,可收集机理见解并为合理的泡沫设计提供配方指导。

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