Yang Rong, Zhao Yue
Jiangsu Key Laboratory of Environmentally Friendly Polymeric Materials, School of Materials Science and Engineering, Jiangsu Collaborative Innovation Center of Photovolatic Science and Engineering, Changzhou University, Changzhou, 213164, People's Republic of China.
Département de chimie, Université de Sherbrooke, Sherbrooke, Québec J1K 2R1, Canada.
ACS Macro Lett. 2018 Mar 20;7(3):353-357. doi: 10.1021/acsmacrolett.8b00089. Epub 2018 Feb 28.
The shape change of a polymer actuator based on liquid crystal network (LCN) generally occurs over a relatively sharp LC-isotropic phase transition. Reported herein is the discovery of an unusual phenomenon and the enabled actuation control for LCN. The smectic phase of a LCN with mesogenic moieties on the chain backbone can be suppressed by high elongation of the specimen, which gives rise to a broad nematic-isotropic phase transition. Consequently, the actuation force and related shape of the actuator can be activated to a given degree by easily varying the temperature over a wide range (35 K for LCN prepared with 500% strain) to adjust the proportion of the order-disorder phase transition. This reversible multitemperature memory actuation can translate into many stable and interconvertible shapes with one single LCN actuator.
基于液晶网络(LCN)的聚合物致动器的形状变化通常发生在相对尖锐的液晶-各向同性相变过程中。本文报道了一种不寻常现象的发现以及对LCN的致动控制。链骨架上带有介晶基团的LCN的近晶相可通过样品的高伸长率得到抑制,这会导致较宽的向列相-各向同性相变。因此,通过在很宽的温度范围内轻松改变温度(对于以500%应变制备的LCN为35 K)来调节有序-无序相变的比例,致动器的驱动力和相关形状可以被激活到给定程度。这种可逆的多温度记忆致动可以使单个LCN致动器转化为许多稳定且可相互转换的形状。