Key Laboratory of Optoelectronic Devices and Systems of Guangdong Province, College of Optoelectronic Engineering, Shenzhen University, Shenzhen, 518060, People's Republic of China.
Nanoscale. 2015 Mar 7;7(9):3976-84. doi: 10.1039/c4nr07678h.
The ability to tune the emission color of upconversion nanoparticles (UCNPs) will greatly enhance the scope of their applications, ranging from infrared solar cells to volumetric multiplexed bioimaging. Conventional methods to tune upconversion are to vary the type and/or the concentration of doped rare-earth ions in these nanoparticle formulations. Here, we introduce a different approach to vary the emission colors of the frequently used sensitizer/activator pairs of Yb(3+)/RE(3+) (RE = Ho, Er, Tm) via utilization of a sensitizer/activator-isolated NaYF4 core-shell structure. We show that the typical green, yellow, and blue luminescent colors from Yb(3+)/Ho(3+)-, Yb(3+)/Er(3+)-, and Yb(3+)/Tm(3+)-co-doped NaYF4 UCNPs can be converted into the quasi-white, green, and pink blue, when corresponding core-shell structures of NaYF4:Yb(3+) @NaYF4:Ho(3+), NaYF4:Yb(3+) @NaYF4:Er(3+) and NaYF4:Yb(3+) @NaYF4:Tm(3+) are built. Time-resolved spectra indicate that decay lifetimes of the emission bands from the sensitizer/activator-isolated core-shell structure significantly vary from that of the sensitizer/activator-codoped NaYF4 UCNPs, verifying the strain-induced modulation of emission channels in the core-shell structure. These sensitizer-activator-isolated core-shell UCNPs have implications for a range of biophotonic or photonic applications.
上转换纳米粒子(UCNPs)的发射颜色调谐能力将极大地扩展其应用范围,从红外太阳能电池到体三维复用生物成像。传统的调谐上转换的方法是改变这些纳米粒子配方中掺杂的稀土离子的类型和/或浓度。在这里,我们介绍了一种不同的方法,通过利用敏化剂/激活剂隔离的 NaYF4 核壳结构来改变 Yb(3+)/RE(3+)(RE = Ho、Er、Tm)常用敏化剂/激活剂对的发射颜色。我们表明,Yb(3+)/Ho(3+)-、Yb(3+)/Er(3+)-和 Yb(3+)/Tm(3+)-共掺杂 NaYF4 UCNPs 的典型绿色、黄色和蓝色发光颜色可以转换为准白色、绿色和粉红色蓝色,当构建相应的 NaYF4:Yb(3+)@NaYF4:Ho(3+)、NaYF4:Yb(3+)@NaYF4:Er(3+)和 NaYF4:Yb(3+)@NaYF4:Tm(3+)核壳结构时。时间分辨光谱表明,发射带的衰减寿命从敏化剂/激活剂隔离的核壳结构显著变化从敏化剂/激活剂共掺杂 NaYF4 UCNPs,验证了在核壳结构中发射通道的应变诱导调制。这些敏化剂-激活剂隔离的核壳 UCNPs 对一系列生物光子学或光子学应用具有重要意义。