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Tunable upconversion of holmium sublattice through interfacial energy transfer for anti-counterfeiting

机译:可调上转换的钬子格界面的能量转移防伪

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摘要

Photon upconversion is a fascinating phenomenon that can convert low-energy photons to high-energy photons efficiently. However, most previous relevant research has been focused on upconversion systems with a sufficiently low lanthanide emitter concentration, such as 2 mol% for Er3+ in an Er-Yb coupled system. Realizing the upconversion from lanthanide heavily doped systems in particular, the emitter sublattice is still a challenge. Here, we report a mechanistic strategy to achieve the intense upconversion of the holmium sublattice in a core-shell-based nanostructure design through interfacial energy transfer channels. This design allowed a spatial separation of Ho3+ and sensitizers (e.g., Yb3+) into different regions and unwanted back energy transfers between them could then be minimized. By taking advantage of the dual roles of Yb3+ as both a migrator and energy trapper, a gradual color change from red to yellowish green was achievable upon 808 nm excitation, which could be further markedly enhanced by surface attaching indocyanine green dyes to facilitate the harvesting of the incident excitation energy. Moreover, emission colors could be tuned by applying non-steady state excitation. Such a fine-tunable color behavior holds great promise in anti-counterfeiting. Our results present a facile but effective conceptual model for the upconversion of the holmuim sublattice, which is helpful for the development of a new class of luminescent materials toward frontier applications.
机译:光子上转换是一个有趣的现象可以将低能光子转换成高能光子效率。以前的相关研究都集中在上转换系统与一个足够低镧系元素排放浓度,如2摩尔%对Er3 + Er-Yb耦合的系统。镧系重掺杂的上转换系统特别是发射器子格仍然是一个挑战。强烈的上转换的实现策略的钬core-shell-based子格纳米结构设计通过界面能传输通道。分离Ho3 +和增敏剂(如Yb3 +)到不同的地区和不必要的能量它们之间转移可以最小化。利用Yb3 +的双重角色候鸟和能源设陷阱捕兽者,一个循序渐进的颜色从红色黄色绿色可以实现在808 nm激发通过表面将进一步明显增强吲哚菁绿染料提供便利获取事件的激发能量。此外,发射颜色可以调运用非均衡状态激发。fine-tunable颜色行为拥有更大的潜力在防伪。简单但有效的概念模型上转换的holmuim子格,这是有利于发展的一个新类发光材料向边境应用程序。

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