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Non-quenching photoluminescence emission up to at least 865 K upon near-UV excitation in a single crystal of orange-red emitting SmPO4

机译:在橙色红色发射SMPO4的单晶中,在接近UV激发后,在紫外线激发中不淬火光致发光发射

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摘要

The adjustment of photoluminescence emission spectrum and an enhancement in the thermal stability of red/orange-red emitting phosphors is an important issue for the whole lighting industry. Herein, we present our results on the luminescence spectroscopy of a single crystal sample of SmPO4 exhibiting a prominent orange-red emission at 597 nm, along with a charge-transfer absorption (O2- -> Sm3+) around 200 nm. We study the temperature dependence of emission spectra in SmPO4 for excitations at 365 and 455 nm, to mimic experimental conditions for phosphor converted light emitting diodes, to show that the sample has a non-quenching photoluminescence emission up to at least 865 K for an excitation at 365 nm, and similar to 865 K for an excitation at wavelength, 455 nm. The thermal stability of SmPO4 was found to be much higher than its structural analogue, EuPO4, which is also an orange-red emission phosphor, but possesses a thermal quenching temperature of 710 K (exc. 365 nm), and 735 K (exc. 455 nm). The extraordinary thermal stability of SmPO4 is a result of the energy transfer from deep defects to the Sm3+ ions at high temperatures. The color purity of SmPO4 (65%) was found to be slightly lower than the EuPO4 sample (70%), at room temperature. The results suggests that the rare earth orthophosphate, SmPO4, has a large potential for near-UV excited phosphor converted solid state lighting devices.
机译:光致发光发射光谱的调节和红色/橙红色发光磷光体热稳定性的增强是整个照明工业的重要问题。在此,我们将我们的结果展示了SMPO4的单晶样品的发光光谱法,其在597nm处具有突出的橙红色发射,以及约200nm的电荷转移吸收(O 2-> Sm 3 +)。我们研究SMPO4在365和455nm处激发发射光谱的温度依赖性,以模拟磷光体转化发光二极管的实验条件,表明样品具有至少865 k的非淬火光致发光发射,以激发至少865 k在365nm处,类似于865 k的波长,455nm。发现SMPO4的热稳定性远高于其结构类似物,Eupo4,其也是橙红色发射磷光体,但具有710k(Exc.365nm)的热猝灭温度和735 k(Exc。 455 nm)。 SMPO4的非凡热稳定性是在高温下从深度缺陷到SM3 +离子的能量转移的结果。发现SMPO4(65%)的颜色纯度在室温下略低于EuPO 4样品(70%)。结果表明,稀土正磷酸盐SMPO4,具有近UV激发磷光体转换固态照明装置的大潜力。

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