Photo-triggered full-color circularly polarized luminescence based on photonic capsules for multilevel information encryption

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作者
Siyang Lin
Yuqi Tang
Wenxin Kang
Hari Krishna Bisoyi
Jinbao Guo
Quan Li
机构
[1] Beijing University of Chemical Technology,Key Laboratory of Carbon Fibers and Functional Polymers, Ministry of Education; College of Materials Science and Engineering
[2] Southeast University,Institute of Advanced Materials and School of Chemistry and Chemical Engineering
[3] Kent State University,Advanced Materials and Liquid Crystal Institute and Materials Science Graduate Program
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摘要
Materials with phototunable full-color circularly polarized luminescence (CPL) have a large storage density, high-security level, and enormous prospects in the field of information encryption and decryption. In this work, device-friendly solid films with color tunability are prepared by constructing Förster resonance energy transfer (FRET) platforms with chiral donors and achiral molecular switches in liquid crystal photonic capsules (LCPCs). These LCPCs exhibit photoswitchable CPL from initial blue emission to RGB trichromatic signals under UV irradiation due to the synergistic effect of energy and chirality transfer and show strong time dependence because of the different FRET efficiencies at each time node. Based on these phototunable CPL and time response characteristics, the concept of multilevel data encryption by using LCPC films is demonstrated.
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