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Multifunctional optical security features based on bacteriorhodopsin

机译:基于Bacteriorhodopsin的多功能光学安全特征

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Bacteriorhodopsin (BR), a photochromic retinal protein, has been developed into a new materials platform for applications in anti-counterfeiting. The combination of three different properties of the material on its molecular level, a light-inducible color change, photochemical data storage and traceability of the protein due to molecular marker sequences make this protein a promising material for security applications. The crystalline structure of the biopigment combines these properties with high stability. As BR is a biological material specialized knowledge for modification, cost- effective production and suitable processing of the material is required. Photochromic BR-based inks have been developed for screen printing, pad printing and ink jet printing. These prints show a high photochromic sensitivity towards variation of illumination. For this reason it is not possible to reproduce the dynamic color by photocopying. In addition to such visual inspection the printed symbols offer the possibility for digital write-once-read-many (WORM) data storage. Photochemical recording is accomplished by a two-photon process. Recording densities in a range from 10~6 bit/cm2 to 10~8 bit/cm~2 have been achieved. Data structures are stored in a polarization sensitive mode which allows an easy and efficient data encryption.
机译:Bacteriorhodopsin(Br)是一种光致变色视网膜蛋白,已发展成为抗假冒应用的新材料平台。材料的组合在其分子水平上的三种不同性质,一种光诱导的颜色变化,光化学数据储存和蛋白质的可追溯性由于分子标记序列使得该蛋白是安全应用的有希望的材料。生物化的结晶结构与高稳定性相结合的这些性能。由于BR是一种生物材料,专业知识,需要经济高效的生产和适当的材料加工。已经开发了光致变色的BR基墨水,用于丝网印刷,垫印刷和喷墨印刷。这些印刷品显示出对照明变异的高光致变色敏感性。因此,不可能通过复印来再现动态颜色。除了这样的视觉检查外,印刷符号还提供数字写入次读取许多(WORM)数据存储的可能性。光化学记录是通过双光子过程完成的。已经实现了10〜6位/ cm2至10〜8位/ cm〜2的范围内的记录密度。数据结构以偏振敏感模式存储,允许简单且有效的数据加密。

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