Kim Keumbee, Guo Yuanhang, Bae Jaehee, Choi Subi, Song Hyeong Yong, Park Sungmin, Hyun Kyu, Ahn Suk-Kyun
Department of Polymer Science and Engineering, Pusan National University, Busan, 46241, Republic of Korea.
Institute for Environment and Energy, Pusan National University, Busan, 46241, Republic of Korea.
Small. 2021 Jun;17(23):e2100910. doi: 10.1002/smll.202100910. Epub 2021 May 2.
Liquid crystal elastomers (LCEs) are broadly recognized as programmable actuating materials that are responsive to external stimuli, typically heat or light. Yet, soft LCEs that respond to changes in environmental humidity are not reported, except a few examples based on rigid liquid crystal networks with limited processing. Herein, a new class of highly deformable hygroscopic LCE actuators that can be prepared by versatile processing methods, including surface alignment as well as 3D printing is presented. The dimethylamino-functionalized LCE is prepared by the aza-Michael addition reaction between a reactive LC monomer and N,N'-dimethylethylenediamine as a chain extender, followed by photopolymerization. The humidity-responsive properties are introduced by activating one of the LCE surfaces with an acidic solution, which generates cations on the surface and provides asymmetric hydrophilicity to the LCE. The resulting humidity-responsive LCE undergoes programmed and reversible hygroscopic actuation, and its shape transformation can be directed by the cut angle with respect to a nematic director or by localizing activation regions in the LCE. Most importantly, various hygroscopic LCE actuators, including (porous) bilayers, a flower, a concentric square array, and a soft gripper, are successfully fabricated by using LC inks in UV-assisted direct-ink-writing-based 3D printing.
液晶弹性体(LCEs)被广泛认为是对外部刺激(通常是热或光)有响应的可编程驱动材料。然而,除了少数基于加工受限的刚性液晶网络的例子外,尚未报道对环境湿度变化有响应的软质LCEs。在此,我们展示了一类新型的高度可变形吸湿LCE致动器,它可以通过多种加工方法制备,包括表面取向以及3D打印。二甲基氨基功能化的LCE是通过反应性液晶单体与作为扩链剂的N,N'-二甲基乙二胺之间的氮杂迈克尔加成反应制备的,随后进行光聚合。通过用酸性溶液活化LCE的一个表面来引入湿度响应特性,这会在表面产生阳离子并为LCE提供不对称亲水性。由此产生的湿度响应LCE经历程序化和可逆的吸湿驱动,其形状转变可以通过相对于向列型指向矢的切割角度或通过在LCE中定位活化区域来控制。最重要的是,通过在基于紫外辅助直接墨水书写的3D打印中使用液晶墨水,成功制造了各种吸湿LCE致动器,包括(多孔)双层、花朵、同心方形阵列和软夹具。