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用于超分子加密的可调谐固态荧光材料。

Tunable solid-state fluorescent materials for supramolecular encryption.

作者信息

Hou Xisen, Ke Chenfeng, Bruns Carson J, McGonigal Paul R, Pettman Roger B, Stoddart J Fraser

机构信息

Department of Chemistry, Northwestern University, Evanston, Illinois 60208-3113, USA.

Cycladex, c/o Innovation and New Ventures Office, Northwestern University, 1800 Sherman Avenue, Suite 504, Evanston, Illinois 60201-3789, USA.

出版信息

Nat Commun. 2015 Apr 22;6:6884. doi: 10.1038/ncomms7884.

Abstract

Tunable solid-state fluorescent materials are ideal for applications in security printing technologies. A document possesses a high level of security if its encrypted information can be authenticated without being decoded, while also being resistant to counterfeiting. Herein, we describe a heterorotaxane with tunable solid-state fluorescent emissions enabled through reversible manipulation of its aggregation by supramolecular encapsulation. The dynamic nature of this fluorescent material is based on a complex set of equilibria, whose fluorescence output depends non-linearly on the chemical inputs and the composition of the paper. By applying this system in fluorescent security inks, the information encoded in polychromic images can be protected in such a way that it is close to impossible to reverse engineer, as well as being easy to verify. This system constitutes a unique application of responsive complex equilibria in the form of a cryptographic algorithm that protects valuable information printed using tunable solid-state fluorescent materials.

摘要

可调谐固态荧光材料是安全印刷技术应用的理想选择。如果一份文件的加密信息能够在不解码的情况下得到认证,同时还能抵抗伪造,那么这份文件就具有很高的安全性。在此,我们描述了一种杂化轮烷,通过超分子封装对其聚集进行可逆操纵,实现了可调谐固态荧光发射。这种荧光材料的动态特性基于一组复杂的平衡,其荧光输出非线性地取决于化学输入和纸张的成分。通过将该系统应用于荧光安全油墨中,多色图像中编码的信息能够以几乎不可能被逆向工程的方式得到保护,并且易于验证。该系统构成了一种独特的应用,即以加密算法的形式响应复杂平衡,保护使用可调谐固态荧光材料印刷的有价值信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c528/4423226/f6d07b99f26e/ncomms7884-f1.jpg

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