Leferink op Reinink Anke B G M, van den Pol Esther, Vroege Gert Jan, Petukhov Andrei V
Van 't Hoff Laboratory for Physical and Colloid Chemistry, Debye Institute for Nanomaterials Science, Department of Chemistry of Utrecht University, Padualaan 8, P.O. Box 80.051, Utrecht 3584CH, The Netherlands.
J Colloid Interface Sci. 2014 Aug 15;428:316-20. doi: 10.1016/j.jcis.2014.04.061. Epub 2014 May 4.
The alignment of board-like colloidal goethite particles in the dense rectangular centred columnar liquid crystal phase in an external magnetic field is studied using small angle X-ray scattering (SAXS). Transient SAXS-patterns show broadening of the columnar reflections in specific directions. While the reflections along the field stay at a constant Q-value, the other reflections do not. These results imply a certain pathway of reorientation. It appears that alignment proceeds via collective rotation of domains inducing 'nanoshear' between the layers of particles, which slide over each other. The results support the recently suggested martensitic transition pathway for the simple and centred rectangular columnar phases, which were found to spontaneously transform into each other in another goethite system. The results also provide a fine example of how SAXS can be used to study reorientation behaviour of liquid crystals at the nanoscale.
利用小角X射线散射(SAXS)研究了在外部磁场中,板状胶体针铁矿颗粒在致密的矩形中心柱状液晶相中的排列情况。瞬态SAXS图案显示出柱状反射在特定方向上变宽。虽然沿磁场方向的反射保持在恒定的Q值,但其他反射并非如此。这些结果暗示了一种特定的重新取向途径。似乎排列是通过畴的集体旋转进行的,这会在颗粒层之间引发“纳米剪切”,颗粒层彼此滑动。这些结果支持了最近提出的简单矩形柱状相和中心矩形柱状相的马氏体转变途径,在另一个针铁矿体系中发现这两种相可自发相互转变。这些结果还提供了一个很好的例子,说明了SAXS如何用于研究纳米尺度下液晶的重新取向行为。