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基于单个一维异质微棒的空间分辨多色发光调谐

Spatially Resolved Multicolor Luminescence Tuning on the Single 1D Heterogeneous Microrod.

作者信息

Lu Changyuan, You Wenwu

机构信息

School of Environmental Engineering, Yellow River Conservancy Technical Institute, Kaifeng, 475004, China.

School of Physics and Electronics, Henan University, Kaifeng, 475004, China .

出版信息

Chemistry. 2024 Aug 22;30(47):e202401755. doi: 10.1002/chem.202401755. Epub 2024 Aug 2.

Abstract

The spatially resolvable multicolored microrods have potential applications in many fields. However, achieving spatially resolved multicolor luminescence tuning on the microrod with a fixed composition remains a daunting challenge. Herein, a strategy is proposed that allows for the tuning of spatially resolved, multicolored upconversion (UC) luminescence (UCL) along a 1D heterogeneous microrod by modifying the pulse width of an external laser. NaYbF:1 % Ho is identified as an UCL color-adjustable material, exhibiting pulse width-dependent multicolored UCL, resulting in a significant regulation of the red/green (R/G) ratio from 0.1 to 10.3 as the pulse width is varied from 0.1 to 10 ms. Such variability can be ascribed to differences in the number of photons incident upon the microrod throughout the period necessary for the UC process to occur. Additionally, NaYbF:1 %Tm and NaYF:20 %Yb,1 %Ho are employed as materials that emit blue and green light, respectively, with their UCL colors largely unaffected by changes in the pulse width. Subsequently, a tip-modified epitaxial growth method is utilized to integrate both UCL color-adjustable and non-adjustable segments within the same microrod. Comparing with single-color or fixed multicolor microrods, our developed multisegmented emissive color adjustable 1D heterogeneous microrods have unique optical characteristics and can carry more optical information.

摘要

具有空间分辨率的多色微棒在许多领域具有潜在应用。然而,在固定组成的微棒上实现空间分辨的多色发光调谐仍然是一项艰巨的挑战。在此,我们提出了一种策略,通过改变外部激光的脉冲宽度,能够沿着一维异质微棒对空间分辨的多色上转换(UC)发光(UCL)进行调谐。NaYbF:1 % Ho被确定为一种可调节UCL颜色的材料,呈现出依赖于脉冲宽度的多色UCL,当脉冲宽度从0.1 ms变化到10 ms时,红/绿(R/G)比从0.1显著调节到10.3。这种变化可归因于在UC过程发生所需的整个时间段内入射到微棒上的光子数量的差异。此外,NaYbF:1 %Tm和NaYF:20 %Yb,1 %Ho分别被用作发射蓝光和绿光的材料,它们的UCL颜色在很大程度上不受脉冲宽度变化的影响。随后,采用尖端修饰的外延生长方法,将UCL颜色可调和不可调的部分整合到同一微棒中。与单色或固定多色微棒相比,我们开发的多段发射颜色可调的一维异质微棒具有独特的光学特性,并且能够携带更多的光学信息。

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