光致变色
发光
材料科学
光存储
灵活性(工程)
信息存储
光电子学
三维光学数据存储
对比度(视觉)
计算机数据存储
纳米技术
高对比度
持续发光
光化学
荧光
计算机科学
计算机硬件
数据库
统计
数学
热释光
人工智能
作者
Yan Zhu,Haiqin Sun,Qian‐Nan Jia,Lili Guan,Dengfeng Peng,Qiwei Zhang,Xihong Hao
标识
DOI:10.1002/adom.202001626
摘要
Abstract Luminescent inorganic photochromics have great potential applications in 3D optical memory due to their excellent thermal stability and chemical resistance. Nevertheless, constructing inorganic photochromics with a high luminescence switching contrast remains challenging for optical information storage. Understanding inherent relationships between microenvironment changes, photophysical material properties, and rational control of their luminescence properties are crucial to address these issues. This paper proposes an effective strategy to significantly improve the luminescence switching contrast by more than 300% by site‐selective occupancy engineering on BaMgSiO 4 :Eu 2+ photochromic materials. An effective energy transfer process is established between luminescent and photochromic units, which may provide new insights for designing high‐performance optical storage systems. The fabricated flexible films exhibit excellent waterproof, flexibility, and stretchability characteristics, accompanied by reversible color switching and larger color contrast. Optical data storage can be not only visually encoded and decoded on the flexible films by 405 and 532 nm LED excitation, respectively. Writing, erasing, and reading strategies for flexible films are particularly suitable for complex application environments in optical storage and rewritable flexible devices.
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