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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Managing optical heating via Al3+-doping in Er3+:SrF2 powder phosphors prepared by combustion synthesis
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Managing optical heating via Al3+-doping in Er3+:SrF2 powder phosphors prepared by combustion synthesis

机译:通过Al3 +掺杂在ER3 +:通过燃烧合成制备的SRF2粉末磷光体进行控制

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Quenching of photoluminescence due to optical heating generated by high power laser sources has been identified as a major concern for photonics applications that relies on inorganic phosphor materials. Here we investigate how erbium-doped strontium fluoride (Er3+:SrF2) powders prepared by combustion synthesis respond to intense optical heating. We found that the near-infrared to visible photon up-conversion (UC) luminescence from Er3+ was quenched and the internal temperature of the sample increased from 298 to 695 K when the excitation power of a CW diode laser operating at 808 nm was increased from 0.1 to 2.1 W. However, when SrF2 was co-doped with Al3+, we observed an increase in the UC intensity and an unexpected internal temperature reduction of up to 155 K for an excitation power of 2.1 W. Our analysis suggests that Al3+ decreases the phonon energy and increases the local symmetry of the environment of the rare-earth ion in SrF2.
机译:由于高功率激光源产生的光学加热引起的光致发光的淬火已被识别为依赖于无机磷光体材料的光子学应用的主要问题。 在这里,我们研究了通过燃烧合成制备的掺杂掺铒氟化锶(ER3 +:SRF2)粉末对强烈的光学加热进行响应。 我们发现从ER3 +的近红外到可见光膜上转化(UC)发光从ER3 +淬火,并且当在808nm处运行的CW二极管激光器的激励力增加时,样品的内部温度从298增加到695 k 0.1至2.1W。然而,当SRF2与Al3 +共掺杂时,我们观察到UC强度的增加和出乎意料的内部温度降低高达155 k的激励功率为2.1W。我们的分析表明Al3 +降低了 声子能量并增加SRF2中稀土离子环境的局部对称性。

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