Luo Longfei, Tang Zhehao, Yang Weilu, Liu Dong, Shen Zhihao, Fan Xing-He
Beijing National Laboratory for Molecular Sciences, Key Laboratory of Polymer Chemistry and Physics of Ministry of Education, Center for Soft Matter Science and Engineering, College of Chemistry and Molecular Engineering, Peking University, Beijing 100871, China.
Langmuir. 2021 Aug 3. doi: 10.1021/acs.langmuir.1c01314.
Photo-induced alignment of the thin-film morphologies of azobenzene-containing block copolymers (BCPs) is an effective method to obtain a uniaxial pattern of nanocylinders. Although film thickness is an important factor affecting the self-assembly of BCP thin films, the influence of film thickness on the photo-induced alignment of BCP thin-film morphology has never been systematically studied. Herein, we report the thickness-dependent photo-aligned film morphologies of the BCP containing an azobenzene-based liquid crystalline polymer and a poly(ionic liquid) (PIL), with a perfect uniaxial pattern of PIL nanocylinders. For films aligned with the unpolarized light (UPL), the out-of-plane PIL nanocylinders can be obtained in the film with a thickness of only 1 (∼30 nm, where is the layer spacing of the hexagonally packed cylinder array), which is far lower than the thickness (more than 4) of the thermally annealed film needed to obtain the same morphology. This change is attributed to the orientation effect of UPL on azobenzene mesogens that suppresses the excluded volume effect. For the films aligned with linearly polarized light (LPL), to take advantage of the excluded volume effect to obtain the planar orientation of azobenzene mesogens, the thickness should be controlled to be no more than 3 to achieve an in-plane uniaxial alignment of PIL nanocylinders. The above relationship between the morphology and thickness of photo-aligned film eliminates the obstacles encountered in preparing films with well-ordered photo-aligned morphologies.
含偶氮苯嵌段共聚物(BCP)薄膜形态的光诱导取向是获得纳米圆柱体单轴图案的有效方法。尽管膜厚是影响BCP薄膜自组装的重要因素,但膜厚对BCP薄膜形态光诱导取向的影响从未得到系统研究。在此,我们报道了含偶氮苯基液晶聚合物和聚离子液体(PIL)的BCP的厚度依赖性光取向薄膜形态,其具有完美的PIL纳米圆柱体单轴图案。对于用非偏振光(UPL)取向的薄膜,仅在厚度为1(~30 nm,其中 是六方堆积圆柱阵列的层间距)的薄膜中就能获得面外PIL纳米圆柱体,这远低于获得相同形态所需的热退火薄膜的厚度(超过4)。这种变化归因于UPL对偶氮苯介晶的取向作用,该作用抑制了排除体积效应。对于用线偏振光(LPL)取向的薄膜,为了利用排除体积效应获得偶氮苯介晶的平面取向,厚度应控制不超过3,以实现PIL纳米圆柱体的面内单轴取向。光取向薄膜形态与厚度之间的上述关系消除了制备具有有序光取向形态薄膜时遇到的障碍。