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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Luminescence of emission-tunable Ca10Li(PO4)(7):Eu2+, Sr2+, Mn2+ phosphors with various Eu2+ centers for LED applications
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Luminescence of emission-tunable Ca10Li(PO4)(7):Eu2+, Sr2+, Mn2+ phosphors with various Eu2+ centers for LED applications

机译:发射可调Ca10Li(PO4)(7):Eu2 +,Sr2 +,Mn2 +荧光粉以及各种Eu2 +中心的荧光粉用于LED应用

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Ca10Li(PO4)(7):Eu2+, Sr2+, Mn2+ (CLP:Eu2+, Sr2+, Mn2+) phosphors were prepared by solid-state reaction method, and their photoluminescence properties were investigated. The phase purity was examined by XRD patterns; the optical bandgaps of the host materials were determined to be about 5.35 eV from the diffuse reflection spectra. The Eu2+ single-doped CLP exhibits several overlapping emission bands which are derived from various Eu2+ centers, and the excitation spectra are broadened and enhanced gradually with increasing either monitoring wavelength or Eu2+ concentration. When the Sr2+ ions are doped into CLP: Eu2+, the excitation bands are further extended in width and increased in intensity, which make the CLP:Eu2+ more suitable for the LED chips. Correspondingly, the emission spectra show a continuous enhancement for long-wavelength emissions, accompanied by a gradual decay for short-wavelength emissions. These observations could be due to the adjustment of the crystal structure by introducing Sr2+ ions into CLP which further affects the spectral features. In the CLP:Eu2+, Sr2+, Mn2+ system, warm white emission was obtained with low correlated color temperature. In sum, multicolor-emitting CLP:Eu2+, Sr2+, Mn2+ phosphors were developed by adjusting the dopants contents, and the above results indicate their potential applications in LEDs. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过固相反应法制备了Ca10Li(PO4)(7):Eu2 +,Sr2 +,Mn2 +(CLP:Eu2 +,Sr2 +,Mn2 +)荧光粉,并研究了它们的光致发光性能。通过XRD图谱检查相纯度。从漫反射光谱确定基质材料的光学带隙为约5.35eV。 Eu2 +单掺杂CLP表现出多个重叠的发射带,这些发射带源自各个Eu2 +中心,并且随着监测波长或Eu2 +浓度的增加,激发光谱逐渐变宽和增强。当将Sr2 +离子掺杂到CLP:Eu2 +中时,激发带的宽度进一步扩大,强度增加,这使得CLP:Eu2 +更适合于LED芯片。相应地,发射光谱显示出长波长发射的连续增强,伴随着短波长发射的逐渐衰减。这些观察结果可能归因于通过将Sr2 +离子引入CLP来调节晶体结构,这进一步影响了光谱特征。在CLP:Eu2 +,Sr2 +,Mn2 +系统中,获得的暖白光发射具有较低的相关色温。综上所述,通过调节掺杂剂的含量,可以开发出多色发射的CLP:Eu2 +,Sr2 +,Mn2 +荧光粉,上述结果表明了它们在LED中的潜在应用。 (C)2015 Elsevier B.V.保留所有权利。

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