论文标题

NAYF4YB3ER3合成的纳米变量和紫外线发光研究通过Ti Sapphire 140飞秒激光脉冲研究

Upconverting nanodots of nayf4yb3er3 synthesis characterization and uv visible luminescence study through ti sapphire 140 femtosecond laser pulses

论文作者

Modak, Monami Das, Damarla, Ganesh, Kumar, K Santhosh, Maity, Somedutta, Chaudhury, Anil K, Paik, Pradip

论文摘要

在这项工作中,DOT大小的上转换纳米晶体(UCN点)的直径C.A. 3.4-0.15 nm已合成。这些UCN点在带有980 nm CW-NIR激光器的激发下表现出可见的发射(497、527和545 nm)。此外,这些UCN点具有高能量上转化的发射(紫外线区域,206至231 nm),其ti-Sapphire femtsecond激光器以80 MHz的重复速率以不同的激发速度为140秒的持续时间,但从未报道过。有趣的是,通过调整从Ti:Sapphire Fextosecond Laser观察到的激发波长范围从950 nm到980 nm的激发波长范围从950 nm辐照到980 nm,高能UV-VIS发射的产生及其从206 nm转移到231 nm。我们已经证明了随着能量带隙的变化以及在飞秒激光激发能力下发出的每个光子的吸收光子的数量以及吸收的光子的数量。此外,我们报告了在可见范围内的UCN点的照片发光,具有450 nm的激发波长,表现出蓝色和红色发射(可见)。 UV-VIS区域中高能量上转换的产生对于设计用于治疗应用的光电和生物医学设备可能很有用。

In this work, dot-sized upconversion nanocrystals (UCN-dots) with diameter c.a. 3.4-0.15 nm have been synthesized. These UCN-dots exhibit visible emission (at 497, 527 and 545 nm) under the excitation with 980 nm CW-NIR laser. Further, these UCN-dots exhibit high energy upconversion emission (UV region, 206 to 231 nm) with Ti-Sapphire Femtosecond laser of 140-femtoseconds duration at 80 MHz repetition rate at different excitation, which has never been reported. This is interesting to report that the generation of high energy UV-Vis emission and their shifting from 206 to 231 nm for the UCN-dots by tuning the excitation wavelength ranging from 950 nm to 980 nm irradiated from Ti: sapphire Femtosecond laser observed. We have demonstrated the generation of high energy upconversions with change in energy band gaps as well as number of absorbed photons per photon emitted under the Femtosecond-laser excitation power. Additionally, we report the photo luminescence of UCN-dots in visible range with 450 nm excitation wavelength exhibiting blue and red emission (visible to visible). The generation of high energy up-conversion in UV-Vis region could be useful for designing optoelectronic and biomedical devices for therapeutic application.

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