荧光
光掩模
材料科学
纳米技术
对偶(语法数字)
计算机科学
光电子学
生物系统
光学
图层(电子)
物理
抵抗
生物
文学类
艺术
作者
Jing Bai,Luzhi Zhang,Honghao Hou,Zixing Shi,Jie Yin,Xuesong Jiang
出处
期刊:Research
[AAAS00]
日期:2019-11-02
卷期号:2019: 1-11
被引量:8
标识
DOI:10.34133/2019/2389254
摘要
To achieve the dynamical dual-pattern with multiplex information of complex topography and 3D fluorescence is challenging yet promising for wide applications ranging from visual bioassays, memory, smart devices to smart display. Here, we develop a convenient, reliable, and versatile method to realize the well-ordered dual-pattern with reversible topography and 3D fluorescence via a light direct-writing approach based on the wrinkle mechanism. By introducing the charge transfer (CT) interaction between π -electron-rich anthracene (AN) and π -electron-poor naphthalene diimide (NDI) into the polymer system, both modulus and fluorescence of the polymer films can be spatially regulated through the photodimerization of AN, which is controlled in-plane by photomasks, and becomes gradient in the vertical direction due to the filter effect of light. Therefore, the exposed sample displays a well-ordered complex pattern with the same topography as the applied photomask and 3D gradient change of fluorescence from red to green laterally across the layers simultaneously. The spatial cross-linking and CT interaction of the gradient layer can be controlled independently, which not only provides the reliability and reversibility of the topographical and fluorescence dual-pattern but also endows the possibility for tailoring the pattern with memory and self-healing. These characters of the dual-pattern with reversible topography and 3D fluorescence declare the clear applications in smart multiplex displays, memory, anticounterfeiting, visual detections, and so on.
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