Yang Yun-Ling, Yuan Jia-Yong, Fan Yu-Ting, Wan Dong-Yun, Li Qian-Li, Zhao Jing-Tai, Zhang Zhi-Jun
School of Materials Science and Engineering, Shanghai University, Shanghai, 200072, P.R. China.
Dalton Trans. 2021 Aug 28;50(32):11130-11136. doi: 10.1039/d1dt01623g. Epub 2021 Jul 29.
A series of Bi and Mn co-doped CaZnOS phosphors with a tunable emission color have been synthesized by a high temperature solid-state reaction method. Their crystal structure, spectroscopic properties, energy transfer and thermal quenching have been investigated systematically. An intense blue-green emission band at 485 nm and a red emission band at 616 nm were observed at an excitation wavelength of 375 nm, owing to the P→S transition of Bi and the T(G) →A(S) transition of Mn, respectively. The tunable color from blue-green, white light to red light can be obtained by varying the Mn ion concentration from 0.005 to 0.015 in CaZnOS:Bi. The decay time decreased from 642 to 273 ns with the Mn ion concentration x increasing from 0.005 to 0.015, and the energy transfer efficiency η can reach up to 65% in the CaZnOS:Bi,0.015Mn phosphor. As the temperature increases from 300 to 420 K, the emission intensity is maintained at 67%, and the activation energy E is estimated to be 0.28 eV. An LED fabricated using CaZnOS:Bi,0.01Mn exhibited the chromaticity coordinates and corrected color temperature (CCT) of (0.338, 0.364) and 4655 K, respectively. These results validate the promising applications of the CaZnOS:Bi,Mn phosphor in UV white LEDs.
通过高温固态反应法合成了一系列发射颜色可调的Bi和Mn共掺杂CaZnOS荧光粉。系统研究了它们的晶体结构、光谱性质、能量转移和热猝灭。在375nm激发波长下,分别观察到由于Bi的P→S跃迁和Mn的T(G)→A(S)跃迁,在485nm处有一个强蓝绿色发射带和在616nm处有一个红色发射带。通过在CaZnOS:Bi中改变Mn离子浓度从0.005到0.015,可以获得从蓝绿色、白光到红光的可调颜色。随着Mn离子浓度x从0.005增加到0.015,衰减时间从642ns降低到273ns,并且在CaZnOS:Bi,0.015Mn荧光粉中能量转移效率η可达65%。当温度从300K升高到420K时,发射强度保持在67%,估计激活能E为0.28eV。使用CaZnOS:Bi,0.01Mn制备的LED分别表现出色度坐标(0.338, 0.364)和校正色温(CCT)为4655K。这些结果验证了CaZnOS:Bi,Mn荧光粉在紫外白光发光二极管中的应用前景。