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喷墨打印的显色纸用于加密信息和防伪。

Inkjet-Printable Hydrochromic Paper for Encrypting Information and Anticounterfeiting.

机构信息

Department of Nanoenergy Engineering, Pusan National University , Busan, Republic of Korea 609735.

Department of Physics, National University of Singapore , 2 Science Drive 3, Singapore 117551.

出版信息

ACS Appl Mater Interfaces. 2017 Sep 27;9(38):33071-33079. doi: 10.1021/acsami.7b08054. Epub 2017 Sep 18.

Abstract

Developing rewritable papers has gathered immense interest in recent times in view of developing sustainability in print media without exhausting environmental resources. We herein present a rapid and facile procedure for the fabrication of a communication medium by treating the surface of a paper with synthetic organic molecules, after which plain water could be used as an ink to print and reprint numerous times on the treated paper before disposal. Interestingly, as the paper comes in contact with water, the molecules are driven to reorganize in a slip-stacked arrangement. This alters their ground and excited state properties by hydrogen-bond-assisted nonradiative decay, in which the associated changes are visible to the naked eye. The changes evolved are sensitive to the solubility parameter of the solvent and thermally reversible, thus linking the hydrochromic property to the paper. Against a background of concerns over a rise in counterfeiting and leaks of confidential information, prospects for encrypted communications and anticounterfeiting is herein demonstrated.

摘要

近年来,人们对开发可重复书写的纸张产生了浓厚的兴趣,希望在不耗尽环境资源的情况下实现印刷媒体的可持续发展。在此,我们提出了一种快速简便的方法来制备一种通讯介质,即在纸张表面用合成有机分子进行处理,然后可以使用普通水作为墨水在处理后的纸张上进行多次打印和重印,最后再进行处理。有趣的是,当纸张接触到水时,分子会被驱动以滑动堆叠的方式重新排列。这通过氢键辅助的非辐射衰减来改变它们的基态和激发态性质,其中相关的变化肉眼可见。所发生的变化对溶剂的溶解度参数敏感且热可逆,因此将纸的显色性能与其联系起来。鉴于对伪造和机密信息泄露的担忧不断增加,本文展示了加密通信和防伪的前景。

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