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Spectral characterization of LiYbF(4)upconverting nanoparticles

机译:光谱表征LiYbF (4) upconverting纳米粒子

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摘要

In light of the recent developments on Yb3+-based upconverting rare-earth nanoparticles (RENPs), we have systematically explored the spectral features of LiYbF4:RE3+/LiYF(4)core/shell RENPs doped with various amounts of Tm3+, Er3+, or Ho3+. Tm3+-RENPs displayed photoluminescence from the UV to near-infrared (NIR), and the dominant high-photon-order upconversion emission of these RENPs was tunable by Tm(3+)doping. Similarly, Er3+- and Ho3+-RENPs with green and red upconversion showed wide color tuning, depending on the doping amount and excitation power density. From steady-state power plot and photoluminescence decay studies we have observed respective changes in upconversion photon order and average lifetime that attest to a number of cross-relaxation processes occurring at higher RE(3+)doping concentration. Particularly in the case of Tm3+-RENPs, cross-relaxation promotes four- and five-photon order upconversion emission in the UV and blue spectral regions. The quantum yield of high-order upconversion emission was on par with classic Yb3+/Tm3+-doped systems, yet due to the high number of sensitizer ions in the LiYbF(4)host these RENPs are expected to be brighter and thus better suited for applications such as controlled drug delivery or optogenetics. Overall, LiYbF4:RE3+/LiYF(4)RENPs are promising systems to effectively generate high-order upconversion emissions, owing to excitation energy confinement within the Yb(3+)network and its efficient funneling to the activator dopants.
机译:鉴于最近的进展Yb3 +的我们upconverting稀土纳米颗粒(RENPs)系统地探讨了光谱LiYbF4特性:RE3 + / LiYF核/壳RENPs (4)掺杂不同量的Tm3 + Er3 +,或Ho3 +。紫外到近红外(NIR),占主导地位high-photon-order上转换发射RENPs被Tm(3 +)掺杂可调。Er3 +, Ho3 + -RENPs绿色和红色上转换显示广泛的颜色调整,不同掺杂量和激励能力密度。光致发光衰减研究我们发现各自的变化上转换光子秩序和平均寿命,证明许多交叉衰减过程发生在更高(3 +)掺杂浓度。Tm3 + -RENPs,交叉衰减促进四、five-photon秩序上转换发射在紫外线和蓝色光谱区域。收益率的高阶上转换发射与经典Yb3 + / Tm3再版系统,然而由于高感光剂的离子的数量LiYbF(4)主机这些RENPs预计将亮,因此更适合应用程序如药或光遗传学控制。总的来说,LiYbF4: RE3 + / LiYF (4) RENPs是有前途的系统有效地产生高阶上转换排放,由于励磁能量限制在Yb(3 +)网络有效的将催化剂掺杂物。

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