Department of Forest Biomaterials, North Carolina State University, Raleigh, NC 27697-8005, USA.
J Colloid Interface Sci. 2012 Mar 1;369(1):202-9. doi: 10.1016/j.jcis.2011.12.011. Epub 2011 Dec 13.
Cellulose nanocrystals (CNCs) from ramie fibers are studied as stabilizers of oil-in-water emulsions. The phase behavior of heptane and water systems is studied, and emulsions stabilized by CNCs are analyzed by using drop sizing (light scattering) and optical, scanning, and freeze-fracture electron microscopies. Water-continuous Pickering emulsions are produced with cellulose nanocrystals (0.05-0.5 wt%) grafted with thermo-responsive poly(NIPAM) brushes (poly(NIPAM)-g-CNCs). They are observed to be stable during the time of observation of 4 months. In contrast, unmodified CNCs are unable to stabilize heptane-in-water emulsions. After emulsification, poly(NIPAM)-g-CNCs are observed to form aligned, layered structures at the oil-water interface. The emulsions stabilized by poly(NIPAM)-g-CNCs break after heating at a temperature above the LCST of poly(NIPAM), which is taken as indication of the temperature responsiveness of the brushes installed on the particles and thus the responsiveness of the Pickering emulsions. This phenomenon is further elucidated via rheological measurements, in which viscosities of the Pickering emulsions increase on approach of the low critical solution temperature of poly(NIPAM). The effect of temperature can be counterbalanced with the addition of salt which is explained by the reduction of electrostatic and steric interactions of poly(NIPAM)-g-CNCs at the oil-water interface.
从苎麻纤维中提取的纤维素纳米晶体 (CNC) 被研究为水包油乳液的稳定剂。研究了庚烷和水体系的相行为,并通过使用液滴尺寸(光散射)和光学、扫描和冷冻断裂电子显微镜分析了 CNC 稳定的乳液。用接枝有温敏聚(NIPAM)刷(聚(NIPAM)-g-CNC)的纤维素纳米晶体(0.05-0.5wt%)制备了连续水相的 Pickering 乳液。在 4 个月的观察时间内,观察到它们是稳定的。相比之下,未改性的 CNC 无法稳定庚烷在水中的乳液。乳化后,聚(NIPAM)-g-CNC 在油水界面形成排列整齐的层状结构。在高于聚(NIPAM)的 LCST 温度加热后,由聚(NIPAM)-g-CNC 稳定的乳液会破裂,这表明安装在颗粒上的刷具有温度响应性,从而表明 Pickering 乳液具有响应性。通过流变测量进一步阐明了这种现象,其中聚(NIPAM)的低临界溶液温度接近时,Pickering 乳液的粘度会增加。可以通过添加盐来平衡温度的影响,这是由于在油水界面处聚(NIPAM)-g-CNC 的静电和空间相互作用的减少。