Dhara Palash, Mukherjee Rabibrata
Instability and Soft Patterning Laboratory, Department of Chemical Engineering, Indian Institute of Technology Kharagpur Kharagpur Pin-721302 India
RSC Adv. 2019 Jul 12;9(38):21685-21694. doi: 10.1039/c9ra02552a. eCollection 2019 Jul 11.
We report thermally induced nematic to isotropic (N-I) phase transition as well as dewetting of 5CB Liquid Crystal (LC) thin films coated on flat and topographically patterned substrates with grating geometry of different line width ( ) and periodicity ( ). On a flat substrate, the nematic to isotropic (N-I) phase transition, which takes place within a temperature range between 31.1 °C and 34.4 °C is fully reversible, with re-appearance of identical Schlieren texture when the sample is cooled down during isotropic to nematic (I-N) transition. Upon further heating beyond N-I transition and annealing at ≈ 65 °C, the film undergoes nucleated dewetting with formation and growth of holes, which eventually merge to form isolated droplets. The morphology of the dewetted structures remains unaltered when the film is cooled to room temperature from this stage, though the features undergo phase transition to the nematic state. In contrast on a topographically patterned substrate, the phase transition cycle is associated with a change of the texture of the film during cooling to the nematic stage. Interestingly the molecules exhibit homeotropic anchoring when ≈ 1.5 μm and planar anchoring when large (≈10 μm). When heated further to ≈ 65 °C, the film dewets on topographically patterned substrates resulting in a collection of droplets, which are aligned to the substrate patterns when is large (≈10 μm). In contrast the dewetted droplets are random and not correlated to the patterns when is lower (≈1.5 μm).
我们报道了热诱导的向列相到各向同性相(N-I)的转变,以及涂覆在具有不同线宽( )和周期( )的光栅几何形状的平坦和地形图案化衬底上的5CB液晶(LC)薄膜的去湿现象。在平坦衬底上,发生在31.1℃至34.4℃温度范围内的向列相到各向同性相(N-I)的转变是完全可逆的,当样品在各向同性到向列相(I-N)转变过程中冷却时,相同的纹影纹理会再次出现。在进一步加热超过N-I转变并在约65℃退火后,薄膜经历成核去湿,形成并生长孔洞,这些孔洞最终合并形成孤立的液滴。当薄膜从这个阶段冷却到室温时,去湿结构的形态保持不变,尽管这些特征经历了向列相的相变。相比之下,在地形图案化的衬底上,相变循环与薄膜在冷却到向列相阶段时纹理的变化有关。有趣的是,当 约为1.5μm时,分子呈现垂直取向,而当 较大(约10μm)时呈现平面取向。当进一步加热到约65℃时,薄膜在地形图案化的衬底上去湿,形成一系列液滴,当 较大(约10μm)时,这些液滴与衬底图案对齐。相比之下,当 较低(约1.5μm)时,去湿后的液滴是随机的,与图案无关。