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Application of gold nanoparticle self-assemblies to unclonable anti-counterfeiting technology

机译:金纳米粒子自组装在不可克隆防伪技术中的应用

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摘要

Counterfeits are now world-wide issue. An anti-counterfeit technology with high security level (unclonable), high through-put rate of authentication, and low cost is desirable. Nanotag of plasmonic nanostructure with surface enhanced Raman scattering (SERS) activity is promised for the ideal authentication. The gold nanoparticle (AuNP) self-assemblies were applied to SERS active “stealth nanobeacon” for authentication. Mild deposition of aqueous dispersion of self-assembled AuNP was used. 10 ng AuNP assemblies deposited on a commercial medicine tablet were almost invisible to the eye. Distinguishable SERS signals of reporting molecules was produced by 1s irradiation of 785 nm laser over the nanobeacon, while Raman spectrum of the ingredients was observed on the tablet without the nanobeacon. Rapid authentication of tablets stocked for 60 days was sufficiently carried out. It is considered that the presence of discrete AuNP assemblies allows excellent performances of stealth nanobeacon.
机译:假冒产品现在已成为世界性问题。期望具有高安全级别(不可克隆),高认证吞吐量和低成本的防伪技术。具有表面增强拉曼散射(SERS)活性的等离激元纳米结构的纳米标签有望用于理想的验证。将金纳米粒子(AuNP)自组装组件应用于SERS主动“隐身纳米信标”进行身份验证。使用了自组装AuNP的水分散体的温和沉积。沉积在商业药品平板上的10 ng AuNP组件几乎是肉眼看不见的。报告分子的可分辨SERS信号是通过在纳米信标上1s照射785 nm激光产生的,而在没有纳米信标的片剂上观察到成分的拉曼光谱。可以对储存60天的片剂进行快速验证。人们认为,离散的AuNP组件的存在使隐形纳米信标具有出色的性能。

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