Cellulosic nanorods of various aspect ratios for oil in water Pickering emulsions

纳米晶 纳米棒 皮克林乳液 材料科学 化学工程 纳米技术 单层 吸附 润湿 胶体 纵横比(航空) 纤维素 复合材料 化学 纳米颗粒 有机化学 工程类
作者
Irina Kalashnikova,Hervé Bizot,Patricia Bertoncini,Bernard Cathala,Isabelle Capron
出处
期刊:Soft Matter [Royal Society of Chemistry]
卷期号:9 (3): 952-959 被引量:602
标识
DOI:10.1039/c2sm26472b
摘要

Cellulosic colloidal nanorods of different origins were used in order to investigate the effect of various elongated shapes adsorbed at the oil–water interface for Pickering emulsion characteristics. Nanocrystals of length ranging from 185 nm to 4 μm were obtained from the hydrolysis of cellulose microfibrils of three different biological origins: cotton (CCN), bacterial cellulose (BCN) and Cladophora (ClaCN) leading to aspect ratios ranging from 13 to 160. These nanocrystals are irreversibly adsorbed at the oil–water interface and form ultrastable emulsions. Individual droplets of similar diameter were obtained under diluted conditions, illustrating both similar wetting properties and nanocrystal flexibility for the three different types of nanocrystals. However, it was shown that the aspect ratio directly influences the coverage ratio giving rise, on the one hand to a dense organisation (coverage >80%) with short nanocrystals and on the other hand to an interconnected network of low covered droplets (40%) when longer nanocrystals are used. An estimation is made showing that for the longer nanocrystals, 55% of the nanocrystals introduced are involved in the network of the material. The capillary force that promotes attractive interactions between nanocrystals was also addressed. These results lead to a better understanding of the adsorption process for rod-like particles of various aspect ratios for the elaboration of a controlled surface architecture, from a homogeneous monolayer to interconnected porous multilayered interfaces.
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