首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Broadband near-infrared (NIR) emission realized by the crystal-field engineering of Y3-xCaxAl5-xSixO12:Cr3+ (x=0-2.0) garnet phosphors
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Broadband near-infrared (NIR) emission realized by the crystal-field engineering of Y3-xCaxAl5-xSixO12:Cr3+ (x=0-2.0) garnet phosphors

机译:Y3-XcaxAl5-Xsixo12:Cr3 +(x = 0-2.0)石榴石磷光体的晶体场工程实现宽带近红外(NIR)发射。

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摘要

The rapid development of portable spectrometers has evoked a large demand for minimized light sources; meanwhile, NIR phosphor-converted light-emitting diodes (NIR pc-LEDs) are an optimal choice due to their compactness and low cost. The phosphors used in NIR spectroscopy (NIRS) are required to have broadband emission and high quantum efficiency (QE) for a wider detection range and efficient photo-to-electricity conversion. Inspired by the structural tunability of Y3Al5O12 (YAG), we proposed to achieve broadband emission by crystal field engineering, i.e., indirectly regulating the crystal field strength of Cr(3+)via the co-substitution of Y3+-Al3+ by Ca2+-Si4+ in YAG. The crystal field strength experienced on Cr3+ decreased as the octahedron was distorted and enlarged by the co-substitution. A broadband NIR emission with a large full width at half maximum (FWHM) of 160 nm and a high internal quantum efficiency (IQE) of similar to 75.9% was realized in Y3-xCaxAl5-xSixO12:0.6% Cr (x = 1). The suitability of the investigated NIR phosphor was demonstrated by fabricating an NIR pc-LED prototype, and the detection resolution was improved by 30% compared to that of a traditional white pc-LED. These results indicate the great potential of the Y2CaAl4SiO12:Cr phosphors for use in highly precise and sensitive NIR pc-LEDs.
机译:便携式光谱仪的快速发展诱发了对最小化光源的大需求;同时,由于其紧凑性和低成本,NIR磷光体转换的发光二极管(NIR PC-LED)是最佳选择。 NIR光谱(NIRS)中使用的磷光体需要具有宽带发射和高量子效率(QE),用于更广泛的检测范围和有效的光电转换。通过Y3Al5O12(YAG)的结构可调性的启发,我们提出通过CA2 + -A104 +通过CA2 + -SI4 +间接调节Cr(3+)的宽带排放,即间接地调节Cr(3+)的晶场强度yag。随着八面体的扭曲和扩大,CR3 +在CR3 +上经历的晶体场强度降低。在Y3-XcaxAl5-Xsixo12:0.0.6%Cr(x = 1)中,实现了160nm的半最大(fwhm)和高内部量子效率(iqe)的大的全宽度的宽带NIR发射和具有与75.9%的高内部量子效率(IQE)。通过制造NIR PC-LED原型来证明研究的NIR磷光体的适用性,与传统的白色PC-LED相比,检测分辨率提高了30%。这些结果表明Y2CAAL4SIO12:CR磷光体用于高精度和敏感的NIR PC-LED的巨大潜力。

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