材料科学
光子上转换
激发
纳米颗粒
纳米技术
掺杂剂
激光器
光电子学
吸收(声学)
光化学
兴奋剂
光学
发光
化学
量子力学
复合材料
物理
作者
Jinshu Huang,Zhengce An,Yan Long,Bo Zhou
标识
DOI:10.1002/adfm.202212037
摘要
Abstract Orthogonal upconversion with color‐switchable emissions under different excitation conditions provides new chances to diverse frontier applications of luminescent materials. However, the previous orthogonal upconversion systems compulsorily require the precise control of spatial distributions of dopants and host compositions to avoid spectral cross‐talk, greatly limiting their synthesis and application. Herein, a conceptual design is presented to realize the orthogonal upconversion by selectively activating sensitizers and activators in nanostructure. In detail, the 915 nm laser, instead of the mostly used 980 nm, is adopted to activate the sensitizer Yb 3+ because of the broad 2 F 5/2 ← 2 F 7/2 absorption band; while it is non‐responsive to Er 3+ , consequently avoiding the spectral cross‐talk due to the simultaneous activation of both Er 3+ and Yb 3+ under 980 nm irradiation as shown in the previous works. Such a selective excitation strategy is able to realize the red/green, blue/red, and blue/green orthogonal upconversion in a single nanoparticle by simply altering the excitation wavelength from 915 to 1530 nm. More interestingly, it further allows for full‐color output by temporal control of the upconversion dynamics. The findings suggest a facile but effective approach to the design of smart luminescent materials, showing great potential in multi‐level anti‐counterfeiting, information security and biological applications.
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