Department of Chemical Engineering, Indian Institute of Technology, Kanpur 208016, India.
Langmuir. 2011 Dec 6;27(23):14045-52. doi: 10.1021/la202398v. Epub 2011 Oct 28.
Aqueous suspensions of Laponite, a system composed of disklike nanoparticles, are found to develop optical birefringence over several days, well after the suspensions solidified because of jamming. The optical anisotropy is particularly enhanced near the air-Laponite suspension interface over length scales of several millimeters, which is beyond 5 orders of magnitude larger than the particle length scale, suggestive of large-scale ordering influenced by the interface. The orientational order increases with time and is always greater for higher concentration of salt, higher concentration of Laponite, and higher temperatures of the suspension. Although weakly birefringent, Laponite suspensions covered by paraffin oil do not show any enhancement in optical anisotropy near the interface compared to that in the bulk. We suggest that the expedited structure formation near the air interface propagating progressively inside the sample is responsible for the observed behavior. We discuss the observed nematic ordering in the context of glass-like and gel-like microstructure associated with aqueous Laponite suspensions.
Laponite 是一种由圆盘状纳米颗粒组成的系统,其水悬浮液在几天内会发展出光学双折射,远远超过由于堵塞而凝固的时间。光学各向异性在空气-Laponite 悬浮液界面附近增强,在几毫米的长度尺度上,这远远超过了颗粒长度尺度的 5 个数量级,表明界面影响的大规模有序。取向有序随时间增加,并且对于盐浓度更高、Laponite 浓度更高和悬浮液温度更高的情况总是更大。尽管 Laponite 悬浮液的双折射较弱,但与体相相比,用石蜡油覆盖的 Laponite 悬浮液在界面附近的光学各向异性没有任何增强。我们认为,在样品内部逐渐传播的空气界面附近的快速结构形成导致了观察到的行为。我们讨论了在与水性 Laponite 悬浮液相关的玻璃状和凝胶状微观结构背景下观察到的向列有序。