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首页> 外文期刊>Angewandte Chemie >Encoding Multilayer Complexity in Anti-Counterfeiting Heterometallic MOF-Based Optical Tags
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Encoding Multilayer Complexity in Anti-Counterfeiting Heterometallic MOF-Based Optical Tags

机译:在抗假冒异常基于差异的基于杂机MOF的光学标签中编码多层复杂性

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摘要

Optical tags provide a way to quickly and unambiguously identify valuable assets. Current tag fluorophore options lack the tunability to allow combined methods of encoding in a single material. Herein we report a design strategy to encode multilayer complexity in a family of heterometallic rare-earth metal-organic frameworks based on highly connected nonanuclear clusters. To impart both intricacy and security, a synergistic approach was implemented resulting in both overt (visible) and covert (near-infrared, NIR) properties, with concomitant multi-emissive spectra and tunable luminescence lifetimes. Tag authentication is validated with a variety of orthogonal detection methodologies. Importantly, the effect induced by subtle compositional changes on intermetallic energy transfer, and thus on the resulting photophysical properties, is demonstrated. This strategy can be widely implemented to create a large library of highly complex, difficult-to-counterfeit optical tags.
机译:光学标签提供了一种快速、明确地识别有价值资产的方法。目前的标签荧光团选项缺乏可调性,无法在单一材料中进行组合编码。在此,我们报告了一种基于高度连接的非核团簇的异质金属-稀土金属-有机框架族中多层复杂性编码的设计策略。为了实现复杂性和安全性,采用了一种协同方法,产生了显性(可见)和隐性(近红外,NIR)特性,以及伴随的多发射光谱和可调发光寿命。标签认证通过各种正交检测方法进行验证。重要的是,我们证明了细微的成分变化对金属间能量转移的影响,以及由此产生的光物理性质。这种策略可以广泛应用于创建一个包含高度复杂、难以伪造的光学标签的大型库。

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