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Chiral Nematic Structure of Cellulose Nanocrystal Suspensions and Films; Polarized Light and Atomic Force Microscopy

机译:纤维素纳米晶体悬浮液和薄膜的手性向列结构;偏振光和原子力显微镜

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摘要

Cellulosic liquid crystalline solutions and suspensions form chiral nematic phases that show a rich variety of optical textures in the liquid crystalline state. These ordered structures may be preserved in solid films prepared by evaporation of solvent or suspending medium. Film formation from aqueous suspensions of cellulose nanocrystals (CNC) was investigated by polarized light microscopy, optical profilometry and atomic force microscopy (AFM). An attempt is made to interpret qualitatively the observed textures in terms of the orientation of the cellulose nanocrystals in the suspensions and films, and the changes in orientation caused by the evaporative process. Mass transfer within the evaporating droplet resulted in the formation of raised rings whose magnitude depended on the degree of pinning of the receding contact line. AFM of dry films at short length scales showed a radial orientation of the CNC at the free surface of the film, along with a radial height variation with a period of approximately P/2, ascribed to the anisotropic shrinkage of the chiral nematic structure.
机译:纤维素液晶溶液和悬浮液形成手性向列相,在液晶状态下显示出丰富的光学纹理。这些有序的结构可以保存在通过蒸发溶剂或悬浮介质制备的固体膜中。通过偏振光显微镜,光学轮廓法和原子力显微镜(AFM)研究了由纤维素纳米晶体(CNC)的水悬浮液形成的膜。试图从悬浮液和薄膜中的纤维素纳米晶体的取向以及由蒸发过程引起的取向变化方面定性解释观察到的质地。蒸发液滴内的质量转移导致形成凸起的环,凸起的环的大小取决于后退接触线的钉扎程度。干膜在短长度尺度上的原子力显微镜显示,在膜的自由表面上,CNC的径向取向,以及径向高度变化,其周期约为P / 2,这归因于手性向列结构的各向异性收缩。

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