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Tunable Emissions of Upconversion Fluorescence for Security Applications

机译:用于安全应用的上转换荧光的可调发射

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The rampant appearance of counterfeiting has a serious adverse effect on every aspect in the global markets. Thus, the development of high-tech security strategies has become an urgent challenge. Recently, lanthanide ions (Ln(3+)) doped materials open new avenues for concealing factual data and shield against counterfeiting because of their unique optical characteristics of color-tunable emissions under near-infrared excitation. The present review surveys the recent advances in Ln(3+)-doped upconversion crystals (UCCs) as fluorescent functional inks toward designable and high-level anti-counterfeiting patterns and graphical encoding. The great achievements of fabrication of versatile security patterns can be ascribed to the combination of the single or multiple colorful UCCs with polymers, additives, and solvents. Moreover, the crucial factors including underlying mechanisms, synthetic methods of upconversion fluorescence materials, and the diverse printing technologies employed for patterning the fluorescence images have been highlighted, and the corresponding challenges and opportunities in this promising research area are presented. This review will help providing a fundamental understanding and guidance to rational design fluorescence optical labels based on Ln(3+)-doped UCCs for broadening their applications in high-level security fields.
机译:假冒产品的泛滥对全球市场的各个方面都产生了严重的不利影响。因此,发展高科技安全策略已成为迫在眉睫的挑战。最近,镧系元素离子(Ln(3+))掺杂的材料因其在近红外激发下颜色可调发射的独特光学特性,为掩盖事实数据和防止伪造开辟了新途径。本文综述了掺Ln(3+)上转换晶体(UCC)作为荧光功能油墨在可设计和高级防伪图案以及图形编码方面的最新进展。通用安全图案制造的巨大成就可归因于单个或多个彩色UCC与聚合物,添加剂和溶剂的结合。此外,关键因素包括基础机理,上转换荧光材料的合成方法以及用于使荧光图像图案化的多种印刷技术,并提出了在该有前途的研究领域中相应的挑战和机遇。这篇综述将有助于为合理设计基于Ln(3+)掺杂的UCC的荧光光学标签提供基本的理解和指导,以扩展其在高级别安全领域中的应用。

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