Dynamic Fluorescence Materials Based on Naphthalimide-Functionalized Silica Aerogels and Applications in Advanced Information Encryption

材料科学 光致变色 荧光 汞菁 气凝胶 费斯特共振能量转移 光化学 纳米技术 吸收(声学) 加密 紫外线 智能材料 螺吡喃 光电子学 计算机科学 化学 光学 复合材料 物理 操作系统
作者
Wei Wu,Yuhui Yang,Leilei Hu,Jiangkun Zhu,Yangyang Gao,Youhao Wei,Conghao Wu,Haitao Cai
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:16 (12): 15096-15106
标识
DOI:10.1021/acsami.3c19403
摘要

With the progress of forgery and decryption, the traditional encryption technology is apparent not enough, which strongly requires the development of advanced multidimensional encryption strategies and technologies. Photo-stimuli responsive fluorescent materials are promising as candidate materials for advanced information encryption. Here, we have reported new photo-stimuli responsive materials by encapsulating photochromic molecules spiropyrans (SPs) into naphthalimide-functionalized silica aerogels. By introducing different modification groups (dimethylamino) into 1,8-naphthalimide, we obtained two kinds of silica aerogels that emit blue and green colors. The naphthalimide-functionalized silica aerogels/dye composite exhibits a blue (dimethylamino-modified naphthalimide-functionalized silica aerogel showing green) emission from naphthalimide of silica aerogels at 450 nm (520 nm) and a red emission around 650 nm of SP. Under exposure to ultraviolet light, SP gradually transformed into the merocyanine (MC) form, and a strong absorption band appeared near 540 nm. At that time, the fluorescence resonance energy-transfer (FRET) process occurred between naphthalimide and the MC isomer. As the irradiation time is extended, the fluorescence color changes continuously from blue (green) to red through the FRET process. Using the time dependence of fluorescence, dynamic encryption patterns and multiple codes were successfully developed based on these functionalized silica aerogels. This work has provided important guidance for designing advanced information encryption materials.
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