Song Zhexu, Shang Guangyang, Shi Yingjie, Yang Meiqi, Zhou Tianfu, Yu Meina, Gao Yanzi, Zou Cheng
Beijing Advanced Innovation Center for Materials Genome Engineering, Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, China.
Materials (Basel). 2025 Mar 27;18(7):1505. doi: 10.3390/ma18071505.
Polymer-stabilized liquid crystal (PSLC) dimming film has attracted widespread attention due to its normally transparent state, energy-saving capability, and excellent electro-optical performance, which has promising applications in smart cars and building windows. However, achieving good electro-optical performance and high peel strength simultaneously still remains challenging. In this study, a PSLC film based on monoepoxy and diepoxy monomers was prepared through rapid cationic polymerization, showing low driving voltages and high peel strength simultaneously. The influence of the content and composition of two epoxy monomers on the microstructures, mechanical properties, and electro-optical performance of the PSLC films were systematically studied. The polymer morphology of PSLC could be effectively modulated by doping monoepoxy monomers. The PSLC film with total monomer content of ≤15 wt% showed enhanced electro-optical properties and peel strength when doping monoepoxy monomers due to the lateral polymer in the networks and denser polymer on the substrate. When the ratio of E6M to E6PM was 12:3, compared with pure E6M, the threshold voltage decreased from 18.2 V to 12.6 V, and the peel strength increased from 62.53 kPa to 136.37 kPa. These PSLC films can adapt to the requirements of different application scenarios by changing the content and proportion of two epoxy monomers, and the strategy has good prospects in the actual production and application of PSLC films.
聚合物稳定液晶(PSLC)调光膜因其通常的透明状态、节能能力和优异的电光性能而受到广泛关注,在智能汽车和建筑窗户方面具有广阔的应用前景。然而,同时实现良好的电光性能和高剥离强度仍然具有挑战性。在本研究中,通过快速阳离子聚合制备了一种基于单环氧和双环氧单体的PSLC膜,该膜同时具有低驱动电压和高剥离强度。系统研究了两种环氧单体的含量和组成对PSLC膜微观结构、力学性能和电光性能的影响。通过掺杂单环氧单体可以有效地调控PSLC的聚合物形态。当单体总含量≤15 wt%时,由于网络中的横向聚合物和基底上更致密的聚合物,掺杂单环氧单体的PSLC膜的电光性能和剥离强度得到增强。当E6M与E6PM的比例为12:3时,与纯E6M相比,阈值电压从18.2 V降至12.6 V,剥离强度从62.53 kPa提高到136.37 kPa。通过改变两种环氧单体的含量和比例,这些PSLC膜可以适应不同应用场景的要求,该策略在PSLC膜的实际生产和应用中具有良好的前景。