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Lu3+ doping induced photoluminescence enhancement in novel high-efficiency Ba3Eu(BO3)3 red phosphors for near-UV-excited warm-white LEDs

机译:Lu3 +掺杂在新型高效Ba3Eu(BO3)3红色荧光粉中诱导近紫外激发的暖白LED的光致发光

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Ba _(3) Eu(BO _(3) ) _(3) (BEB) and Lu ~(3+) doped BEB red phosphors were successfully synthesized by a high-temperature solid-state reaction method. X-ray diffraction (XRD) patterns, excitation and emission spectra, decay lifetimes, CIE coordinates, internal quantum efficiency, and thermal stability of these phosphors were systematically studied. Under 395 nm excitation, these phosphors exhibited high-brightness red emissions centred at 611 nm. In addition, it was found that doping appropriate amounts of Lu ~(3+) ions into BEB phosphors can improve their photoluminescence intensity and internal quantum efficiency. The integrated emission intensity of BEB:0.3Lu ~(3+) phosphor was about 1.34 times that of BEB phosphor. Compared with commercial red phosphor Y _(2) O _(2) S:Eu ~(3+) , BEB:0.3Lu ~(3+) phosphor showed better color purity (91.4%) and higher emission intensity (about 3.25 times). Surprisingly, the BEB:0.3Lu ~(3+) phosphor had a high internal quantum efficiency of almost 87%, which was higher than that of 83% for BEB phosphors. Meanwhile, the BEB:0.3Lu ~(3+) phosphors also exhibited good thermal stability with activation energy around 0.14 eV, and the integrated emission intensity at 423 K remained about 52% of that at 303 K. Finally, by using commercial BaMgAl _(10) O _(17) :Eu ~(2+) blue phosphors, commercial (Ba,Sr) _(2) SiO _(4) :Eu ~(2+) green phosphors, as-prepared BEB:0.3Lu ~(3+) red phosphors and a 395 nm near-ultraviolet-emitting light-emitting diode (LED) chip, a prototype warm white LED device was fabricated, which showed good color rendering index (CRI = 84.7) and low correlated color temperature (CCT = 3377 K).
机译:通过高温固相反应法成功地合成了Ba_(3)Eu(BO_(3))_(3)(BEB)和Lu〜(3+)掺杂的BEB红色荧光粉。系统地研究了这些磷光体的X射线衍射(XRD)模式,激发和发射光谱,衰减寿命,CIE坐标,内部量子效率和热稳定性。在395 nm激发下,这些磷光体表现出以611 nm为中心的高亮度红色发射。另外,发现将适量的Lu〜(3+)离子掺杂到BEB荧光粉中可以改善其光致发光强度和内部量子效率。 BEB:0.3Lu〜(3+)荧光粉的集成发射强度约为BEB荧光粉的1.34倍。与市售红色荧光粉Y _(2)O _(2)S:Eu〜(3+)相比,BEB:0.3Lu〜(3+)荧光粉显示出更好的色纯度(91.4%)和更高的发射强度(约3.25倍) )。出乎意料的是,BEB:0.3Lu〜(3+)荧光粉的内部量子效率高达87%,高于BEB荧光粉的83%。同时,BEB:0.3Lu〜(3+)荧光粉还表现出良好的热稳定性,活化能约为0.14 eV,并且在423 K时的积分发射强度仍然是303 K时的52%。最后,通过使用商用BaMgAl _ (10)O _(17):Eu〜(2+)蓝色荧光粉,商用(Ba,Sr)_(2)SiO _(4):Eu〜(2+)绿色荧光粉,制备的BEB:0.3Lu 〜(3+)个红色磷光体和一个395 nm的近紫外发光二极管(LED)芯片,制成了原型暖白LED器件,该器件具有良好的显色指数(CRI = 84.7)和较低的相关色温(CCT = 3377 K)。

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