材料科学
光电子学
透射率
不透明度
胆甾液晶
像素
光开关
光学
电介质
全息术
螺吡喃
液晶显示器
液晶
结构着色
光子晶体
顺势排列
光子学
有源矩阵
百叶窗
非易失性存储器
编码(内存)
热的
阈值电压
双稳态
作者
Jun‐Seok Ma,Dongryul Lee,Hyunjin Oh,Gyungin Ryu,Jin‐Young Choi,Seung‐Won Oh,Jong-Hyun Ka,Adithya Pradeep,Jinge Guo,Sungjune Jung,Wook‐Sung Kim
标识
DOI:10.1021/acsami.6c02375
摘要
We present an inkjet-defined cholesteric liquid crystal (CLC) pixel architecture that enables frequency-addressable tristable optical memory for energy-efficient reflective modulation. Drop-on-demand printing forms individually programmable CLC droplets in a scalable, mask-free format, translating frequency-driven multistability into a manufacturable pixel platform. Each printed pixel can be electrically written into three optically distinct states: a transparent colored state, a colorless opaque concealment state, and a colored opaque memory state that remains stable after removal of the driving field. The tristability originates from frequency-selective competition between ion-mediated electrohydrodynamic convection at low frequency and dielectric realignment at high frequency. By encoding optical states through frequency programming rather than sustained bias, the device achieves true field-off retention without continuous power input. The printed arrays reach 63.5 dpi with uniform switching over areas up to 8.5 × 8.5 cm 2, exhibit repeatable cycling without threshold drift, and show negligible thermal load during operation. By integrating structural coloration, transmittance modulation, and nonvolatile optical memory within a scalable inkjet process, this work establishes a practical pathway toward large-area smart windows, reflective displays, and programmable photonic surfaces.
科研通智能强力驱动
Strongly Powered by AbleSci AI