Reversible color modulation of luminescent conjugated polymers based on a chemical redox mechanism and applications in rewritable paper and multiple information encryption

氧化还原 共轭体系 发光 聚合物 光化学 荧光 材料科学 电化学 加密 吸收(声学) 组合化学 纳米技术 计算机科学 化学 光电子学 光学 电极 物理化学 物理 操作系统 复合材料 冶金
作者
Weijun Li,Maoxing Yin,Jin Liu,Haichang Fu,Xiongchao Shao,Yujie Dong,Qingbao Song,Cheng Zhang,Wai Yeung Wong
出处
期刊:Materials horizons [Royal Society of Chemistry]
卷期号:9 (8): 2198-2206 被引量:2
标识
DOI:10.1039/d2mh00566b
摘要

Reversible color modulation plays a key role in the field of information recording and encryption, but for the common colorful conjugated polymer materials, currently a convenient method to achieve their reversible color modulation is still lacking. Herein, six luminescent conjugated polymers P1 to P6 were successfully designed and synthesized, all of which could realize reversible color modulation through a similar reversible chemical redox behavior accompanied by reversible color and fluorescence changes. The same absorption spectral changes as those under electrochemical redox conditions strongly confirmed that these polymers underwent reversible redox reactions in the Fe3+ and H2O system, which happened spontaneously according to the theoretical analysis of the reaction thermodynamics. Based on the reversible color modulation in the Fe3+ and H2O system, polymers P1, P2 and P3, with different colors (yellow, orange and red) and fluorescence emissions, were successfully applied as rewritable paper with multi-color and multi-fluorescence printing as well as long-term recording capabilities. Meanwhile, polymers P1, P4, P5 and P6, which showed similar green fluorescence and yellow color but different oxidation potentials, were also introduced to accomplish multiple encryption and decryption of information, based on the step-by-step selective oxidation of the four polymers by adjusting the concentration of Fe3+.
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