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Multi‐Color Luminescence Transition of Upconversion Nanocrystals via Crystal Phase Control with SiO2 for High Temperature Thermal Labels

机译:SiO2晶相控制上转换纳米晶体的多色发光转变用于高温热敏标签

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摘要

Upconversion nanocrystals (UCNs)‐embedded microarchitectures with luminescence color transition capability and enhanced luminescence intensity under extreme conditions are suitable for developing a robust labeling system in a high‐temperature thermal industrial process. However, most UCNs based labeling systems are limited by the loss of luminescence owing to the destruction of the crystalline phase or by a predetermined luminescence color without color transition capability. Herein, an unusual crystal phase transition of UCNs to a hexagonal apatite phase in the presence of SiO nanoparticles is reported with the enhancements of 130‐fold green luminescence and 52‐fold luminance as compared to that of the SiO ‐free counterpart. By rationally combining this strategy with an additive color mixing method using a mask‐less flow lithography technique, single to multiple luminescence color transition, scalable labeling systems with hidden letters‐, and multi‐luminescence colored microparticles are demonstrated for a UCNs luminescence color change‐based high temperature labeling system.
机译:在极端条件下具有发光颜色过渡功能和增强的发光强度的上转换纳米晶体(UCN)嵌入式微体系结构适合在高温热工业过程中开发可靠的标记系统。但是,大多数基于UCNs的标记系统受结晶相破坏引起的发光损失或没有颜色转换能力的预定发光颜色的限制。在此,据报道,与不含SiO的对应物相比,在存在SiO纳米粒子的情况下,UCNs向六方磷灰石相发生了不寻常的晶体相变,绿色荧光增强了130倍,亮度提高了52倍。通过将这种策略与使用无掩膜的流动光刻技术的加色混色方法合理地结合起来,可以实现单到多发光色过渡,可显示具有隐藏字母的可扩展标签系统和多发光色微粒,从而实现了UCN发光色变化。基于高温的标签系统。

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