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Conversion of invisible metal-organic frameworks to luminescent perovskite nanocrystals for confidential information encryption and decryption

机译:将不可见的金属有机骨架转换为发光的钙钛矿纳米晶体以进行机密信息加密和解密

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摘要

Traditional smart fluorescent materials, which have been attracting increasing interest for security protection, are usually visible under either ambient or UV light, making them adverse to the potential application of confidential information protection. Herein, we report an approach to realize confidential information protection and storage based on the conversion of lead-based metal-organic frameworks (MOFs) to luminescent perovskite nanocrystals (NCs). Owing to the invisible and controlled printable characteristics of lead-based MOFs, confidential information can be recorded and encrypted by MOF patterns, which cannot be read through common decryption methods. Through our conversion strategy, highly luminescent perovskite NCs can be formed quickly and simply by using a halide salt trigger that reacts with the MOF, thus promoting effective information decryption. Finally, through polar solvents impregnation and halide salt conversion, the luminescence of the perovskite NCs can be quenched and recovered, leading to reversible on/off switching of the luminescence signal for multiple information encryption and decryption processes.
机译:传统的智能荧光材料在安全保护方面引起了越来越多的兴趣,通常在环境光或紫外光下都可见,从而不利于机密信息保护的潜在应用。在本文中,我们报告了一种基于铅基金属有机框架(MOFs)向发光钙钛矿纳米晶体(NCs)转换的实现机密信息保护和存储的方法。由于基于铅的MOF具有不可见和可控制的可打印特性,因此可以通过MOF模式记录和加密机密信息,而这些信息无法通过普通的解密方法读取。通过我们的转换策略,可以通过使用与MOF发生反应的卤化物盐触发物,快速而简单地形成高发光度的钙钛矿NC,从而促进有效的信息解密。最后,通过极性溶剂的浸渍和卤化物盐的转化,钙钛矿NC的发光可以被淬灭和恢复,从而导致发光信号的可逆开/关切换,从而可以进行多种信息加密和解密过程。

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