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Lanthanide–polyoxometalate-based self-erasing luminescent hydrogels with time-dependent and resilient properties for advanced information encryption

多金属氧酸盐 材料科学 镧系元素 发光 加密 纳米技术 光电子学 化学 计算机科学 计算机安全 有机化学 离子 催化作用
作者
Yumei Hua,Jingfang Li,Min Gao,Liye Liang,Sicong Zhao,Guangming Li
出处
期刊:Materials horizons [Royal Society of Chemistry]
卷期号:12 (7): 2369-2379 被引量:8
标识
DOI:10.1039/d4mh01451k
摘要

In such an era of information explosion, improving the level of information security is still a challenging task. Self-erasing luminescent hydrogels are becoming ideal candidates for improving the level of information security with simple encryption and decryption methods. Herein, a lanthanide-polyoxometalate-based self-erasing luminescent hydrogel with time-dependent and resilient properties was constructed through a covalent crosslinked network constructed with polyacrylamide and a non-covalent crosslinked network constructed with [2-(methacryloyloxy)ethyl]trimethyl ammonium chloride/Na9DyW10O36, along with doping urease. This acquired hydrogel exhibited reversible luminescence switching properties in the presence of HCl-urea mixed solution. At the same time, obvious changes in the luminescence intensity can be seen on the timescale by modulating the concentrations of HCl and urea/urease. Based on this, the information loaded onto the hydrogel by using a HCl-urea mixed solution self-erased over time, leading to misinformation during this process. The real information can only be recognized at a specific time. Moreover, the information is self-erased permanently, which can avoid secondary leakage of information. In addition, the hydrogel has excellent resilience. The information can be loaded in the stretched state of the hydrogel, resulting in the information only being recognized in the re-stretched state of the hydrogel while the information cannot be recognized in the normal state of the hydrogel. The combination of time-dependent and resilient properties of the hydrogel can further improve the level of information security effectively. This self-erasing luminescent hydrogel with time-dependent and resilient properties has great potential in improving the security of information encryption.
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