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层状自组装、海绵状结构、棒状液晶行为及醇-水二元溶剂中锂皂石纳米薄片的相图。

Hierarchical self-assembly, spongy architecture, liquid crystalline behaviour and phase diagram of Laponite nanoplatelets in alcohol-water binary solvents.

机构信息

Soft and Active Matter Group, Department of Physics, Indian Institute of Science Education and Research (IISER) Tirupati, Andhra Pradesh 517507, India.

School of Physical Sciences, Jawaharlal Nehru University, New Delhi 110 067, India.

出版信息

J Colloid Interface Sci. 2019 Oct 15;554:731-742. doi: 10.1016/j.jcis.2019.07.040. Epub 2019 Jul 17.

Abstract

Hydrophobicity and solvation of different charged species are among the various key factors that regulate the self-assembly of colloids, and macromolecules in their suspensions. In this paper, we demonstrate a method to tune the interaction potential and the resulting phase behaviour and microstructure of the states that form by using a combination of Laponite nanoplatelets and alcohols in water. This allows us to exquisitely control the self-assembly process of Laponite nanoplatelets. A new class of soft materials, called nanoclay-organogels, is studied systematically for their aging behaviour, microscopic structure and mechanical properties. Real space imaging techniques depicted spongy architecture with nano and micron size pores inside the gel matrix indicating the hierarchical self-assembly of the nanoplatelets in the aqueous solutions of polar organics. We have extensively examined the dispersion stability, aggregation, gelation and liquid crystalline behaviour of Laponite nanoplatelets in different alcohol (methanol, ethanol, 1-proponaol and ethylene glycol, and glycerol)-water binary solvents, thereby proposing a generalized description of nanoclay in alcoholic solutions, which is poorly probed and marginally understood in the literature. A phase diagram of Laponite® in alcohol solutions is proposed, which clearly demarcates regions of isotropic sol, unstable sol, isotropic gel, nematic/birefringent gel, glass, flocculated sedimentation and liquid crystalline structures.

摘要

疏水性和不同带电物质的溶剂化作用是调节胶体和悬浮液中大分子自组装的各种关键因素之一。在本文中,我们展示了一种方法,通过在水中使用 Laponite 纳米片和醇的组合来调整相互作用势以及由此产生的相行为和微观结构。这使我们能够精确控制 Laponite 纳米片的自组装过程。我们系统地研究了一类称为纳米粘土有机凝胶的新型软物质,以了解其老化行为、微观结构和机械性能。实空间成像技术描绘了海绵状结构,凝胶基质内有纳米和微米大小的孔,表明在极性有机溶液中纳米片的分级自组装。我们广泛研究了 Laponite 纳米片在不同醇(甲醇、乙醇、1-丙醇和乙二醇以及甘油)-水二元溶剂中的分散稳定性、聚集、凝胶化和液晶行为,从而提出了对纳米粘土在醇溶液中的广义描述,这在文献中研究甚少,理解也很有限。提出了 Laponite®在醇溶液中的相图,清楚地区分了各向同性溶胶、不稳定溶胶、各向同性凝胶、向列/双折射凝胶、玻璃、絮凝沉降和液晶结构的区域。

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