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首页> 外文期刊>RSC Advances >Far-red-emitting double-perovskite CaLaMgSbO6:Mn4+ phosphors with high photoluminescence efficiency and thermal stability for indoor plant cultivation LEDs
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Far-red-emitting double-perovskite CaLaMgSbO6:Mn4+ phosphors with high photoluminescence efficiency and thermal stability for indoor plant cultivation LEDs

机译:具有高光致发光效率和热稳定性的远红外发射双钙钛矿CaLaMgSbO6:Mn4 +荧光粉,用于室内植物栽培LED

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摘要

A series of Mn ~(4+) -activated CaLaMgSbO _(6) far-red-emitting phosphors were synthesized by a solid-state reaction route and the microstructure and optical characterizations were investigated in detail. Upon excitation at 370 and 469 nm, the samples showed intense far-red emission at about 708 nm originating from the ~(2) E _(g) → ~(4) A _(2g) transition and the optimal Mn ~(4+) concentration was 0.7 mol%. The as-prepared phosphors also exhibited excellent internal quantum efficiency (88%) and high thermal stability. The emission intensity at room temperature dropped to 54% when the temperature rose to 423 K and the activation energy was 0.34 eV. The outstanding optical properties and the fact that the emission band of the obtained phosphors had a broad overlap with the absorption band of phytochrome P _(FR) demonstrated that the CaLaMgSbO _(6) :Mn ~(4+) phosphors may be promising potential spectral converters for applying to indoor plant cultivation light-emitting diodes.
机译:通过固相反应路线合成了一系列Mn〜(4 +)-活化的CaLaMgSbO_(6)远红外发光粉,并对其微观结构和光学特性进行了详细的研究。在370和469 nm处激发后,样品显示出约708 nm处的强烈远红光发射,源自〜(2)E _(g)→〜(4)A _(2g)跃迁和最佳Mn〜(4 +)浓度为0.7摩尔%。所制备的磷光体还表现出优异的内部量子效率(88%)和高的热稳定性。当温度升至423 K且活化能为0.34 eV时,室温下的发射强度降至54%。出色的光学性能以及所得磷光体的发射带与植物色素P _(FR)的吸收带有广泛的重叠这一事实表明,CaLaMgSbO _(6):Mn〜(4+)磷光体可能具有广阔的发展前景用于室内植物栽培发光二极管的光谱转换器。

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