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Nd3+-Sensitized multicolor upconversion luminescence from a sandwiched core/shell/shell nanostructure

机译:Nd3 +敏化的多色上转换从核/壳/夹壳发光奈米结构

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摘要

Lanthanide-doped upconversion nanoparticles (UCNPs) have attracted interest for use in bioimaging, biosensing, and therapeutic applications. These motivations are empowered by multicolor upconversion luminescence (UCL) under single near infrared wavelength excitation at similar to 980 nm. However, this wavelength overlaps with the absorption peak of water that is dominant in the biological environment, eliciting a serious biological heating problem. This study reports tailored multicolor UCL from a Nd3+-sensitized sandwich-structure of core/shell/shell UCNPs of NaYbF4:0.5%Tm,1%Nd@ CaF2:30%Nd@CaF2:1%Nd,20%Yb,2%Er that can be excited at single wavelength of similar to 800 nm without producing any local heating. Incorporation of substantial Nd3+ sensitizers in the middle shell region allows efficient harvesting of excitation light, with the excitation then migrating bidirectionally across the core/shell interfaces to simultaneously activate blue emission from Tm in the core as well as green and red emission from Er in the outermost shell layer. By precise control of the content of lanthanide ions in each domain, a palette of multicolor UCL can be produced, ranging from blue to white. The described Nd3+-sensitized multicolor UCNPs hold promises for a variety of multiplexed biological applications, without complications from heating effects.
机译:Lanthanide-doped上转换纳米粒子(UCNPs)用于吸引了兴趣bioimaging,若和治疗应用程序。多色上转换发光(UCL)单一的近红外波长激发类似于980海里。与水的吸收峰重叠是在生物环境中占主导地位,引起严重的生物加热问题。本研究报告定制多色的伦敦大学学院Nd3 +敏化的三明治结构CaF2:30%Nd@CaF2:1%Nd 20%Yb, 2%Er那可以兴奋在单一波长的类似于800海里没有产生任何局部加热。整合大量Nd3 +增敏剂中间壳地区允许高效的激发光,收获激发然后迁移一个同时核/壳的接口激活蓝色的排放从Tm的核心绿色和红色发光的Er外层层。镧系离子在每个域的内容多色UCL的面板可以生产,从蓝色到白色。Nd3 +敏化的多色UCNPs持有的承诺为各种不同的多路复用的生物应用程序,没有加热并发症效果。

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