首页> 美国卫生研究院文献>Nanoscale Research Letters >Revisiting the Enhanced Red Upconversion Emission from a Single β-NaYF4:Yb/Er Microcrystal By Doping with Mn2+ Ions
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Revisiting the Enhanced Red Upconversion Emission from a Single β-NaYF4:Yb/Er Microcrystal By Doping with Mn2+ Ions

机译:通过掺杂Mn2 +离子重新研究单个β-NaYF4:Yb / Er微晶中增强的红色上转换发射。

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摘要

The presence of manganese ions (Mn2+) in Yb/Er-co-doped nanomaterials results in suppressing green (545 nm) and enhancing red (650 nm) upconversion (UC) emission, which can achieve single-red-band emission to enable applications in bioimaging and drug delivery. Here, we revisit the tunable multicolor UC emission in a single Mn2+-doped β-NaYF4:Yb/Er microcrystal which is synthesized by a simple one-pot hydrothermal method. Excited by a 980 nm continuous wave (CW) laser, the color of the single β-NaYF4:Yb/Er/Mn microrod can be tuned from green to red as the doping Mn2+ ions increase from 0 to 30 mol%. Notably, under a relatively high excitation intensity, a newly emerged emission band at 560 nm (2H9/2 → 4I13/2) becomes significant and further exceeds the traditional green (545 nm) emission. Therefore, the red-to-green (R/G) emission intensity ratio is subdivided into traditional (650 to 545 nm) and new (650 to 560 nm) R/G ones. As the doped Mn2+ ions increase, these two R/G ratios are in lockstep with the same tunable trends at low excitation intensity, but the tunable regions become different at high excitation intensity. Moreover, we demonstrate that the energy transfer (ET) between Mn2+ and Er3+ contributes to the adjustment of R/G ratio and leads to tunable multicolor of the single microrod. The spectroscopic properties and tunable color from the single microrod can be potentially utilized in color display and micro-optoelectronic devices.
机译:掺Yb / Er的纳米材料中锰离子(Mn 2 + )的存在导致抑制绿色(545 nm)和增强红色(650 nm)上转换(UC)发射,这可以实现单红波段发射,使其能够应用于生物成像和药物输送。在这里,我们回顾了通过简单的一锅水热法合成的单个Mn 2 + 掺杂的β-NaYF4:Yb / Er微晶中的可调多色UC发射。受到980 nm连续波(CW)激光的激发,随着掺杂Mn 2 + 离子的增加,单个β-NaYF4:Yb / Er / Mn微棒的颜色可以从绿色变成红色。 0至30 mol%。值得注意的是,在较高的激发强度下,在560 nm处新出现的发射带( 2 H9 / 2→ 4 I13 / 2)变得显着,并进一步超过了传统的绿色(545 nm)发射。因此,红绿(R / G)发射强度比可细分为传统的(650至545nm)和新的(650至560 nm)R / G。随着掺杂的Mn 2 + 离子的增加,这两个R / G比在低激发强度下具有相同的可调谐趋势,但是在高激发强度下可调谐区域变得不同。此外,我们证明了Mn 2 + 和Er 3 + 之间的能量转移(ET)有助于调节R / G比,并导致单色的可调多色微棒。来自单个微棒的光谱性质和可调谐颜色可潜在地用于彩色显示器和微光电装置中。

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