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通过980nm单激光激发实现Lu2O3:Yb3+/Er3+/Tm3+纳米晶体可控的红、绿、蓝(RGB)和亮白色上转换发光。

Controllable red, green, blue (RGB) and bright white upconversion luminescence of Lu2O3:Yb3+/Er3+/Tm3+ nanocrystals through single laser excitation at 980 nm.

作者信息

Yang Jun, Zhang Cuimiao, Peng Chong, Li Chunxia, Wang Lili, Chai Ruitao, Lin Jun

机构信息

State Key Laboratory of Rare Earth Resources Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, China.

出版信息

Chemistry. 2009;15(18):4649-55. doi: 10.1002/chem.200802106.

Abstract

Light fantastic! Lu(2)O(3):Yb(3+)/Er(3+)/Tm(3+) nanocrystals with controllable red, green, blue (RGB) and bright white upconversion luminescence by a single laser excitation of 980 nm have been successfully synthesized (see picture). Due to abundant UC PL colors, it can potentially be used as fluorophores in the field of color displays, back light, UC lasers, photonics, and biomedicine.Lu(2)O(3):Yb(3+)/Er(3+)/Tm(3+) nanocrystals have been successfully synthesized by a solvothermal process followed by a subsequent heat treatment at 800 degrees C. Powder X-ray diffraction, transmission electron microscopy, upconversion photoluminescence spectra, and kinetic decay were used to characterize the samples. Under single-wavelength diode laser excitation of 980 nm, the bright blue emissions of Lu(2)O(3):Yb(3+), Tm(3+) nanocrystals near 477 and 490 nm were observed due to the (1)G(4)-->(3)H(6) transition of Tm(3+). The bright green UC emissions of Lu(2)O(3):Er(3+) nanocrystals appeared near 540 and 565 nm were observed and assigned to the (2)H(11/2)-->(4)I(15/2) and (4)S(3/2)-->(4)I(15/2) transitions, respectively, of Er(3+). The ratio of the intensity of green luminescence to that of red luminescence decreases with an increase of concentration of Yb(3+) in Lu(2)O(3):Er(3+) nanocrystals. In sufficient quantities of Yb(3+) with resprct to Er(3+), the bright red UC emission of Lu(2)O(3):Yb(3+)/Er(3+) centered at 662 nm was predominant, due to the (4)F(9/2)-->(4)I(15/2) transition of Er(3+). Based on the generation of red, green, and blue emissions in the different doped Lu(2)O(3):RE(3+) nanocrystals, it is possible to produce the luminescence with a wide spectrum of colors, including white, by the appropriate doping of Yb(3+), Tm(3+), and Er(3+) in the present Lu(2)O(3) nanocrystals. Namely, Lu(2)O(3):3 %Yb(3+)/0.2 %Tm(3+)/0.4 %Er(3+) nanocrystals show suitable intensities of blue, green, and red (RGB) emission, resulting in the production of perfect and bright white light with CIE-x=0.3456 and CIE-y=0.3179, which is very close to the standard equal energy white light illuminate (x=0.33, y=0.33). Because of abundant luminescent colors from RGB to white in Lu(2)O(3):Yb(3+)/Er(3+)/Tm(3+) nanocrystals under 980 nm laser diode (LD) excitation, they can potentially be used as fluorophores in the field of color displays, back light, UC lasers, photonics, and biomedicine.

摘要

奇妙之光!通过980nm单激光激发成功合成了具有可控红、绿、蓝(RGB)及明亮白色上转换发光的Lu(2)O(3):Yb(3+)/Er(3+)/Tm(3+)纳米晶体(见图)。由于丰富的上转换发光颜色,其在彩色显示、背光源、上转换激光器、光子学及生物医学领域有潜在用作荧光团的可能。通过溶剂热法并随后在800℃进行热处理成功合成了Lu(2)O(3):Yb(3+)/Er(3+)/Tm(3+)纳米晶体。采用粉末X射线衍射、透射电子显微镜、上转换光致发光光谱及动力学衰减对样品进行表征。在980nm单波长二极管激光激发下,观察到Lu(2)O(3):Yb(3+), Tm(3+)纳米晶体在477和490nm附近的明亮蓝色发射,这归因于Tm(3+)的(1)G(4)-->(3)H(6)跃迁。观察到Lu(2)O(3):Er(3+)纳米晶体在540和565nm附近出现明亮的绿色上转换发射,分别归因于Er(3+)的(2)H(11/2)-->(4)I(15/2)和(4)S(3/2)-->(4)I(15/则)跃迁。在Lu(2)O(3):Er(3+)纳米晶体中,绿色发光强度与红色发光强度之比随Yb(3+)浓度增加而降低。在相对于Er(3+)有足够量Yb(3+)时,以662nm为中心的Lu(2)O(3):Yb(3+)/Er(3+)的明亮红色上转换发射占主导,这归因于Er(3+)的(4)F(9/2)-->(4)I(15/2)跃迁。基于不同掺杂的Lu(2)O(3):RE(3+)纳米晶体中产生红、绿、蓝发射,通过在当前的Lu(2)O(3)纳米晶体中适当掺杂Yb(3+)、Tm(3+)和Er(3+),有可能产生包括白色在内的宽光谱颜色发光。即,Lu(2)O(3):3 %Yb(3+)/0.2 %Tm(3+)/0.4 %Er(3+)纳米晶体显示出合适强度的蓝、绿、红(RGB)发射,产生了CIE-x = 0.3456和CIE-y = 0.3179的完美明亮白光,这非常接近标准等能白光照明(x = 0.33,y = 0.33)。由于在980nm激光二极管(LD)激发下Lu(2)O(3):Yb(3+)/Er(3+)/Tm(3+)纳米晶体具有从RGB到白色的丰富发光颜色,它们在彩色显示、背光源、上转换激光器、光子学及生物医学领域有潜在用作荧光团的可能。

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