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高亮度多色可调谐的超小β-Na(Y,Gd)F₄:Ce,Tb,Eu/β-NaYF₄ 核/壳纳米晶体。

Highly bright multicolor tunable ultrasmall β-Na(Y,Gd)F₄:Ce,Tb,Eu/β-NaYF₄ core/shell nanocrystals.

机构信息

Molecular Recognition Research Center, Korea Institute of Science and Technology, Hwarangno 14-gil 5, Seongbuk-gu, Seoul 136-791, Republic of Korea.

出版信息

Nanoscale. 2013 Oct 7;5(19):9255-63. doi: 10.1039/c3nr02591h. Epub 2013 Aug 15.

Abstract

Herein, we report highly bright multicolor-emitting β-Na(Y,Gd)F₄:Ce,Tb,Eu/β-NaYF₄ nanoparticles (NPs) with precise color tunability. First, highly bright sub-20 nm β-Na(Y,Gd)F₄:Ce,Tb,Eu NPs were synthesized via a heating-up method. By controlling the ratio of Eu(3+) to Tb(3+), we generated green, yellow-green, greenish yellow, yellow, orange, reddish orange, and red emissions from the NP solutions via energy transfer of Ce(3+)→ Gd(3+)→ Tb(3+) (green) and Ce(3+)→ Gd(3+)→ Tb(3+)→ Eu(3+) (red) ions under ultraviolet light illumination (254 nm). Because of Ce(3+) and Gd(3+) sensitization, Tb(3+) ions exhibited strong green emission. The decay time of Tb(3+) emission decreased from 4.0 to 1.4 ms as the Eu(3+) concentration was increased, suggesting that energy was transferred from Tb(3+) to Eu(3+). As a result, Eu(3+) emission peaks were generated and the emission color was transformed from green to red. Monodisperse sub-6 nm β-Na(Y,Gd)F₄:Ce,Tb,Eu NPs were synthesized through a simple reduction of the reaction temperature. Although fine color tunability was retained, their brightness was considerably decreased owing to an increase in the surface-to-volume ratio. The formation of a β-NaYF₄ shell on top of the sub-6 nm NP core to produce β-Na(Y,Gd)F₄:Ce,Tb,Eu/β-NaYF₄ significantly increased the emission intensity, while maintaining the sub-10 nm sizes (8.7-9.5 nm). Quantum yields of the ultrasmall NPs increased from 1.1-6.9% for the core NPs to 6.7-44.4% for the core/shell NPs. Moreover, highly transparent core/shell NP-polydimethylsiloxane (PDMS) composites featuring a variety of colors, excellent color tunability, and high brightness were also prepared.

摘要

在此,我们报告了具有精确颜色可调性的高亮度多色发射β-Na(Y,Gd)F₄:Ce,Tb,Eu/β-NaYF₄ 纳米粒子(NPs)。首先,通过加热法合成了高度明亮的亚 20nmβ-Na(Y,Gd)F₄:Ce,Tb,Eu NPs。通过控制 Eu(3+)与 Tb(3+)的比例,我们通过 Ce(3+)→Gd(3+)→Tb(3+)(绿色)和 Ce(3+)→Gd(3+)→Tb(3+)→Eu(3+)(红色)离子的能量转移,从 NP 溶液中产生了绿色、绿黄色、黄绿色、黄色、橙色、橙红色和红色发射,在紫外光照射(254nm)下。由于 Ce(3+)和 Gd(3+)的敏化作用,Tb(3+)离子表现出强烈的绿色发射。随着 Eu(3+)浓度的增加,Tb(3+)发射的衰减时间从 4.0 毫秒降低到 1.4 毫秒,表明能量从 Tb(3+)转移到 Eu(3+)。结果,产生了 Eu(3+)发射峰,发射颜色从绿色转变为红色。通过简单降低反应温度,合成了单分散的亚 6nmβ-Na(Y,Gd)F₄:Ce,Tb,Eu NPs。尽管保留了精细的颜色可调性,但由于表面体积比的增加,其亮度大大降低。在亚 6nmNP 核顶部形成β-NaYF₄壳,产生β-Na(Y,Gd)F₄:Ce,Tb,Eu/β-NaYF₄,显著提高了发射强度,同时保持了亚 10nm 的尺寸(8.7-9.5nm)。超小 NPs 的量子产率从核 NPs 的 1.1-6.9%增加到核/壳 NPs 的 6.7-44.4%。此外,还制备了具有多种颜色、出色的颜色可调性和高亮度的高度透明的核/壳 NP-聚二甲基硅氧烷(PDMS)复合材料。

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