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基于随机分布纳米线的防伪纳米指纹。

Anti-counterfeit nanoscale fingerprints based on randomly distributed nanowires.

机构信息

Department of Chemistry, Korea Advanced Institute of Science and Technology (KAIST), Daejeon 305-701, Republic of Korea.

出版信息

Nanotechnology. 2014 Apr 18;25(15):155303. doi: 10.1088/0957-4484/25/15/155303. Epub 2014 Mar 20.

Abstract

Counterfeiting is conducted in almost every industry, and the losses caused by it are growing as today's world trade continues to increase. In an attempt to provide an efficient method to fight such counterfeiting, we herein demonstrate anti-counterfeit nanoscale fingerprints generated by randomly distributed nanowires. Specifically, we prepare silver nanowires coated with fluorescent dyes and cast them onto the surface of transparent PET film. The resulting non-repeatable patterns characterized by the random location of the nanowires and their fluorescent colors provide unique barcodes suitable for anti-counterfeit purposes. Counterfeiting such a fingerprint pattern is impractical and expensive; the cost of replicating it would be higher than the value of the typical target item being protected. Fingerprint patterns can be visually authenticated in a simple and straightforward manner by using an optical microscope. The concept of generating unique patterns by randomness is not limited to the materials shown in this paper and should be readily applicable to other types of materials.

摘要

造假行为几乎存在于每个行业,而随着当今世界贸易的持续增长,其造成的损失也在不断增加。为了提供一种有效打击此类造假行为的方法,我们在此展示了由随机分布的纳米线产生的防伪纳米级指纹。具体来说,我们制备了涂有荧光染料的银纳米线,并将其浇铸到透明 PET 薄膜的表面。由此产生的非重复性图案的特点是纳米线的随机位置及其荧光颜色,提供了适合防伪目的的独特条形码。复制这样的指纹图案是不切实际且昂贵的;复制它的成本将高于被保护的典型目标物品的价值。可以通过光学显微镜以简单直接的方式对指纹图案进行视觉验证。通过随机性生成独特图案的概念不仅限于本文中所示的材料,并且应该可以容易地应用于其他类型的材料。

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