首页> 美国卫生研究院文献>Scientific Reports >Structure and photoluminescence properties of red-emitting apatite-type phosphor NaY9(SiO4)6O2:Sm3+ with excellent quantum efficiency and thermal stability for solid-state lighting
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Structure and photoluminescence properties of red-emitting apatite-type phosphor NaY9(SiO4)6O2:Sm3+ with excellent quantum efficiency and thermal stability for solid-state lighting

机译:固态照明的具有优异量子效率和热稳定性的发红光磷灰石型磷光体NaY9(SiO4)6O2:Sm3 +的结构和光致发光特性

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摘要

A novel red-emitting phosphor NaY9(SiO4)6O2:Sm3+ (NYS:Sm3+) was synthesized and the X-ray diffraction and high-resolution TEM testified that the NYS compound belongs to the apatite structure which crystallized in a hexagonal unit cell with space group P63/m. The novel phosphor boasts of such three advantageous properties as perfect compatible match with the commercial UV chips, 73.2% quantum efficiency and 90.9% thermal stability at 150 °C. Details are as follows. NYS:Sm3+ phosphor showed obvious absorption in the UV regions centered at 407 nm, which can be perfectly compatible with the commercial UV chips. The property investigations showed that NYS:Sm3+ phosphor emitted reddish emission with CIE coordination of (0.563, 0.417). The optimum quenching concentration of Sm3+ in NYS phosphor was about 10%mol, and the corresponding concentration quenching mechanism was verified to be the electric dipole–dipole interaction. Upon excitation at 407 nm, the composition-optimized NYS:0.10Sm3+ exhibited a high quantum efficiency of 73.2%, and its luminescence intensity at 150 °C decreased simply to 90.9% of the initial value at room temperature. All of the results indicated that NYS:Sm3+ is a promising candidate as a reddish-emitting UV convertible phosphor for application in white light emitting diodes (w-LEDs).
机译:合成了新型的红色荧光粉NaY9(SiO4)6O2:Sm 3 + (NYS:Sm 3 + ),并进行了X射线衍射和高分辨率TEM的验证。该NYS化合物属于磷灰石结构,其在空间群为P63 / m的六边形晶胞中结晶。新型磷光体具有三大优势,可与市售UV芯片完美兼容,在150 C下的量子效率为73.2%,热稳定性为90.9%。详细内容如下。 NYS:Sm 3 + 荧光粉在以407 nm为中心的UV区显示出明显的吸收,可以与商业UV芯片完美兼容。性能研究表明,NYS:Sm 3 + 荧光粉发出微红色的发射光,其CIE配比为(0.563,0.417)。 NYS荧光粉中Sm 3 + 的最佳猝灭浓度约为10%mol,并证明了相应的浓度猝灭机理是电偶极-偶极相互作用。在407 nm处激发后,经成分优化的NYS:0.10Sm 3 + 表现出73.2%的高量子效率,并且其在150 C下的发光强度仅下降至初始值的90.9%(在90°C时)。室内温度。所有结果表明,NYS:Sm 3 + 是发红光的紫外线可转换磷光体,有望用于白光发光二极管(w-LED),是有希望的候选物。

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