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聚合物吸附对粘土纳米片悬浮液向列相的去稳定作用

Destabilization of the Nematic Phase of Clay Nanosheet Suspensions by Polymer Adsorption.

作者信息

El Rifaii Karin, Wensink Henricus H, Bizien Thomas, Gabriel Jean-Christophe P, Michot Laurent, Davidson Patrick

机构信息

Université Paris-Saclay, CNRS, Laboratoire de Physique des Solides, 91405, Orsay, France.

SWING beamline, SOLEIL Synchrotron, 91192 Gif-sur-Yvette, France.

出版信息

Langmuir. 2020 Oct 27;36(42):12563-12571. doi: 10.1021/acs.langmuir.0c02084. Epub 2020 Oct 13.

DOI:10.1021/acs.langmuir.0c02084
PMID:33050693
Abstract

Complex aqueous mixtures comprised of swelling clays and hydrosoluble polymers naturally occur in soils and play a major role in pedogenesis. They are also very often used for formulating oil-well drilling fluids, paints, and personal-care products. The suspensions of some natural clays, thanks to their large nanoparticle aspect ratio, spontaneously form nematic liquid-crystalline phases where the particles align parallel to each other, which affects their flow properties. We observed that adding small amounts of hydrosoluble polymers to these clay suspensions destabilizes the nematic phase with respect to the isotropic (disordered) phase. The polymers that we used (poly(ethylene oxide) and dextran) were too small to adopt particle-bridging conformations and small-angle X-ray scattering experiments showed that the structure of the nematic phase is not altered by polymer doping. However, the adsorption isotherm shows that the macromolecules adsorb onto the clay nanosheets, effectively coating them with a polymer layer. Our extension of Onsager's theory for polymer-coated platelets properly captures the experimental phase diagram and shows how the nematic phase destabilization can be due to the polymer adsorbing more on the platelet faces than at the rim. Because the flow properties of the nematic phase are very different from those of the isotropic phase, the presence or absence of the former phase is an important factor to be determined and considered to explain the rheological behavior of these complex systems.

摘要

由膨胀性粘土和水溶性聚合物组成的复杂水性混合物天然存在于土壤中,并在土壤发生过程中起主要作用。它们还经常用于配制油井钻井液、油漆和个人护理产品。一些天然粘土的悬浮液,由于其较大的纳米颗粒纵横比,会自发形成向列型液晶相,其中颗粒彼此平行排列,这会影响它们的流动特性。我们观察到,向这些粘土悬浮液中添加少量水溶性聚合物会使向列相相对于各向同性(无序)相不稳定。我们使用的聚合物(聚环氧乙烷和葡聚糖)太小,无法采用颗粒桥连构象,小角X射线散射实验表明,聚合物掺杂不会改变向列相的结构。然而,吸附等温线表明,大分子吸附在粘土纳米片上,有效地用聚合物层覆盖它们。我们对Onsager理论在聚合物包覆血小板方面的扩展正确地捕捉了实验相图,并表明向列相的不稳定可能是由于聚合物在血小板表面的吸附比在边缘更多。由于向列相的流动特性与各向同性相非常不同,前一相的存在与否是解释这些复杂体系流变行为时需要确定和考虑的一个重要因素。