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Multicolor tunability and upconversion enhancement of fluoride nanoparticles by oxygen dopant

机译:多色可调谐性和提高上转换氟化纳米粒子的氧掺杂剂

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The ability to manipulate the upconversion luminescence of lanthanide-ion doped fluoride upconversion nanoparticles (UCNPs) is particularly important and highly desired due to their wide applications in color displays, multiplexing bioassays and multicolor imaging. Here, we developed a strategy for simultaneously tuning color output and enhancing upconversion emission of Yb/Er doped fluoride UCNPs, based on adjusting the oxygen doping level. The synthesis of multicolored multifunctional NaGdF4:Yb,Er UCNPs was used as the model host system to demonstrate this protocol. Ammonium nitrate (NH4NO3) was used as the oxygen source and added into the reaction system at the beginning stage of nucleation and growth process of fluoride UCNPs, which facilitates the formation of enough oxygen atoms and the diffusion of these into the fluoride host matrix. The results revealed that multicolour output and upconversion enhancement mainly resulted from the variation of phonon energy and crystal field symmetry of the host lattice, respectively. This strategy can be further expanded to other fluoride host matrices. As an example of an application, multicolored UCNPs were used as a color converter in light emitting diodes, which can effectively convert near-infrared light into visible light. It is expected that these multicolored UCNPs will be promising for applications in multiplexing biodetection, bioimaging (optical and magnetic resonance imaging) and other optical technologies, and the present method for the control of O~(2-) doping may also be used in other functional nanomaterials.
机译:操作上转换的能力氟化lanthanide-ion掺杂的发光上转换纳米粒子(UCNPs)特别重要的和高度期望的因他们广泛应用于彩色显示器,多路复用和多色成像。在这里,我们同时开发的策略调颜色输出和提高上转换排放掺Yb / Er UCNPs氟化物,基于调整氧掺杂水平。五彩缤纷的多功能NaGdF4: Yb,呃UCNPs模型被用来作为主机系统证明该协议。(NH4NO3)作为氧源和补充道向反应系统在开始阶段成核和生长过程的氟化物UCNPs,促进足够的形成氧原子,这些进入的扩散氟化主机矩阵。多色的产出和提高上转换主要是由于声子的变异能源和晶体场对称性的主机分别晶格。氟化进一步扩大到其他主机矩阵。作为一个应用程序的一个例子,五颜六色的UCNPs被用作转换器在光色发光二极管,它可以有效地转换近红外光转化为可见光。这些五彩缤纷的UCNPs将预期有前途的多路复用的应用程序biodetection bioimaging(光学和磁性磁共振成像)和其他光学技术,目前的方法控制O ~(2 -)掺杂也可以使用其他功能纳米材料。

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