Cao Siyu, Aimi Junko, Yoshio Masafumi
Research Center for Functional Materials, National Institute for Materials Science, 1-2-1 Sengen, Tsukuba, Ibaraki 305-0047, Japan.
Graduate School of Chemical Sciences and Engineering, Hokkaido University, Kita 13, Nishi 8, Kita-ku, Sapporo, Hokkaido 060-8628, Japan.
ACS Appl Mater Interfaces. 2022 Sep 28;14(38):43701-43710. doi: 10.1021/acsami.2c11029. Epub 2022 Aug 31.
Here, we report low-voltage-driven fast-response nanostructured columnar ionic liquid crystal/polymer composite actuators that form three-dimensional continuous ion channels. A three-component self-assembly of a zwitterionic rod-like molecule (49.5 wt %), an ionic liquid (27.5 wt %), and poly(vinyl alcohol) (23.0 wt %) provided a free-standing stretchable membrane electrolyte. The dissociated ions can move through a continuous 3D ionophilic matrix surrounding the hydrophobic columns formed by the hexagonally organized rod-mesogens. Three-layer actuators composed of the electrolyte film sandwiched between two conductive polymer film electrodes of doped polythiophene exhibited a bending motion with 0.32% strain and moved 2 mm within 220 ms under 1 V at 0.1 Hz in 70% relative humidity due to the formation of electric double layers at the soft solid electrolyte/electrode interfaces. The bending strain of the columnar nanostructured actuator is comparable to those of polymer iongel actuators and block polymer actuators containing 25-80 wt % of ionic liquids. It is noteworthy that a small number of ions organized into the 3D nanochannels can generate the large bending deformation, which can contribute to reduce the risk of leakage of ions and the production cost. In addition, we have demonstrated a low-voltage-driven deformable mirror actuator that is expected to be applied to optical devices.
在此,我们报道了形成三维连续离子通道的低压驱动快速响应纳米结构柱状离子液体晶体/聚合物复合致动器。两性离子棒状分子(49.5 wt%)、离子液体(27.5 wt%)和聚乙烯醇(23.0 wt%)的三组分自组装提供了一种独立的可拉伸膜电解质。解离的离子可以通过围绕由六边形排列的棒状液晶元形成的疏水柱的连续三维亲离子基质移动。由夹在两个掺杂聚噻吩的导电聚合物薄膜电极之间的电解质膜组成的三层致动器在70%相对湿度下,于0.1 Hz的频率、1 V电压下表现出0.32%应变的弯曲运动,并在220 ms内移动了2 mm,这是由于在软固体电解质/电极界面形成了双电层。柱状纳米结构致动器的弯曲应变与聚合物离子凝胶致动器以及含有25 - 80 wt%离子液体的嵌段聚合物致动器相当。值得注意的是,组织到三维纳米通道中的少量离子能够产生大的弯曲变形,这有助于降低离子泄漏风险和生产成本。此外,我们展示了一种有望应用于光学器件的低压驱动可变形镜致动器。