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

Chemistry

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

S. Lin, Y. Tang, et al.

Discover groundbreaking device-friendly solid films with remarkable color tunability, crafted through Förster resonance energy transfer (FRET) within liquid crystal photonic capsules. These innovative capsules boast photoswitchable circularly polarized luminescence, enabling multilevel data encryption—research conducted by Siyang Lin, Yuqi Tang, Wenxin Kang, Hari Krishna Bisoyi, Jinbao Guo, and Quan Li.

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Abstract
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.
Publisher
Nature Communications
Published On
May 25, 2023
Authors
Siyang Lin, Yuqi Tang, Wenxin Kang, Hari Krishna Bisoyi, Jinbao Guo, Quan Li
Tags
Förster resonance energy transfer
liquid crystal photonic capsules
circularly polarized luminescence
color tunability
data encryption
FRET efficiencies
photoswitchable
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