Van 't Hoff Laboratory for Physical and Colloid Chemistry, Debye Institute for Nanomaterials Science, Utrecht University, The Netherlands.
Langmuir. 2010 Sep 7;26(17):14182-7. doi: 10.1021/la100797x.
We report the formation of hexagonal columnar liquid crystal phases in suspensions of large (570 nm diameter), sterically stabilized, colloidal gibbsite platelets in organic solvent. In thin cells these systems display strong iridescence originating from hexagonally arranged columns that are predominantly aligned perpendicularly to the cell walls. Small angle X-ray scattering and polarization microscopy indicate the presence of orientational fluctuations in the hexagonal columnar liquid crystal phase. The presence of decoupling of the average platelet orientation and the column axis as well as column undulations leading to a decrease of the effective column diameter are discussed. The fact that these phenomena are particularly pronounced in the vertical direction and are enhanced toward the bottom part of the system points to the role of gravitational compaction on the structure.
我们报告了在有机溶剂中大尺寸(570nm 直径)、空间稳定的胶体水铝石薄片悬浮液中六方柱状液晶相的形成。在薄电池中,这些系统显示出源自于六方排列的柱状物的强虹彩,这些柱状物主要垂直于细胞壁排列。小角度 X 射线散射和偏振显微镜表明,在六方柱状液晶相中存在取向波动。讨论了平均薄片取向和解耦与柱状轴以及导致有效柱状直径减小的柱状波纹的存在。这些现象在垂直方向上特别明显,并在系统的底部增强,这表明重力压实对结构的作用。