Data storage and encryption with a high security level based on molecular configurational isomers

加密 计算机科学 异丙胺 字节 化学 材料科学 计算机安全 计算机硬件 有机化学
作者
Yang Liu,Jinghui Shen,Yu Dong,Lijuan Zhu,Caicong Li,Donghui Wang,Weiguo Huang
出处
期刊:Soft Matter [Royal Society of Chemistry]
卷期号:18 (35): 6599-6606 被引量:4
标识
DOI:10.1039/d2sm00890d
摘要

Developing advanced materials for highly secure data-encryption is crucial but very challenging, as most data-encryption materials (the message area) are chemically different from the substrates (the background) on which they are being written, leading to high risks of data leakage by deciphering via sophisticated instrumental analysis. Additionally, most materials require only one stimulus for decryption, resulting in a low-level of data-security. Here, a three configurational isomer-based data-encryption method is developed (i.e., propylamine, isopropylamine, and cyclopropylamine). Their similar molecular formulae, elemental constitution, and physiochemical properties make them ideal date-encryption materials. On the other hand, the significant differences in lower critical solution temperatures (LCST) of the corresponding polyacrylamides, i.e., 10 °C for poly(N-propylacrylamide), 32 °C for poly(N-isopropylacrylamide), and 53 °C for poly(N-cyclopropylacrylamide), respectively, render an effective method for data decryption. Relying on the above features, the data written by three isomers are well-hidden under given conditions. And a specific temperature range, rather than a simple temperature increase or decrease, would be required for decryption. Furthermore, undesired temperatures give wrong outputs, which is highly deceptive to the hacker. Therefore, a high-level of data security can be achieved. This result opens a new door for designing advanced materials for improving the data-security level.
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