材料科学
液晶
纳米材料
双层
兴奋剂
智能材料
纳米技术
光电子学
膜
遗传学
生物
作者
Wenbo Yin,Yuzhen Zhao,Xiangke Jiao,Hong Gao,Yang Zhao,Dong Wang,Yi Luan,Zongcheng Miao
标识
DOI:10.1080/02678292.2024.2345237
摘要
Due to the ability to switch between transparent and light scattering states, polymer dispersed liquid crystals (PDLC) and polymer stabilised cholesteric liquid crystals (PSCLC) are widely used in smart windows and flexible displays. A novel double-layer optical switch fabricated from a PDLC-PVA-PSCLC structure has been developed in this study, and the optimal formulation of each layer of the structure was investigated. In addition, the effect of adding (spin-coating) nanoparticles on overall switch performance was investigated. The double-layer switch under optimal conditions achieved 89.1% UV shielding, which also possessed excellent layer-by-layer driving performance and was able to modulate the UV shielding rate according to the voltage, with a tunable range of 74.83%-94.33%. Consequently, this optical device holds great promise for significant improvement and application in smart windows and flexible displays.
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