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镧系掺杂核壳纳米粒子中的能量操控用于可调谐双模发光以实现先进防伪

Energy Manipulation in Lanthanide-Doped Core-Shell Nanoparticles for Tunable Dual-Mode Luminescence toward Advanced Anti-Counterfeiting.

作者信息

Ding Mingye, Dong Bang, Lu Yi, Yang Xiaofei, Yuan Yongjun, Bai Wangfeng, Wu Shiting, Ji Zhenguo, Lu Chunhua, Zhang Kan, Zeng Haibo

机构信息

Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, College of Science, Nanjing Forestry University, Nanjing, 210037, China.

College of Materials & Environmental Engineering, Hangzhou Dianzi University, Hangzhou, 310018, China.

出版信息

Adv Mater. 2020 Nov;32(45):e2002121. doi: 10.1002/adma.202002121. Epub 2020 Oct 1.

Abstract

Developing advanced luminescent materials and techniques is of significant importance for anti-counterfeiting applications, and remains a huge challenge. In this work, a new and efficient approach for achieving efficient dual-mode luminescence with tunable color outputs via Gd -mediated interfacial energy transfer, Ce -assisted cross-relaxation, and core-shell nanostructuring strategy is reported. The introduction of Ce into the inner core not only serves the regulation of upconversion emission, but also facilitates the ultraviolet photon harvesting and subsequent energy transfer to downshifting (DS) activators in the outer shell layer. Furthermore, the construction of the core@shell nanoarchitecture enables the spatial separation of upconverting activators and DS centers, which greatly suppresses their adverse cross-relaxation processes. Consequently, efficient and multicolor-tunable dual-mode emissions can be simultaneously observed in the pre-designed NaGdF :Yb/Ho/Ce@NaYF :X (X = Eu, Tb, Sm, Dy) core-shell nanostructures under 254 nm ultraviolet light and 980 nm laser excitation. The proof-of-concept experiment demonstrates that 2D-encoded patterns based on dual-mode emitting nanomaterials are very promising for anti-counterfeiting applications. It is believed that this preliminary study will advance the development of the fluorescent materials for potential applications in anti-counterfeiting and optical multiplexing.

摘要

开发先进的发光材料和技术对于防伪应用具有重要意义,但仍然是一个巨大的挑战。在这项工作中,报道了一种通过钆介导的界面能量转移、铈辅助的交叉弛豫和核壳纳米结构策略实现具有可调颜色输出的高效双模发光的新的有效方法。将铈引入内核不仅有助于调节上转换发射,还促进紫外光子的捕获以及随后向外壳层中的下转换(DS)激活剂的能量转移。此外,核@壳纳米结构的构建使上转换激活剂和DS中心在空间上分离,这极大地抑制了它们不利的交叉弛豫过程。因此,在254 nm紫外光和980 nm激光激发下,在预先设计的NaGdF:Yb/Ho/Ce@NaYF:X(X = Eu、Tb、Sm、Dy)核壳纳米结构中可以同时观察到高效且多色可调的双模发射。概念验证实验表明,基于双模发射纳米材料的二维编码图案在防伪应用方面非常有前景。相信这项初步研究将推动荧光材料在防伪和光学复用潜在应用方面的发展。

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