Wang Xihu, Wang Xuyang, Chai Xiaona, Li Jun, Hu Jinyu
Key Laboratory of Functional Materials and Devices for Informatics of Anhui Educational Institutions, Department of Physics, Fuyang Normal University, Fuyang, Anhui, 236037, China.
Generic Technology Center for Photovoltaic Industry of Anhui Province, Fuyang Normal University, Fuyang, Anhui, 236037, China.
Chemphyschem. 2024 Aug 1;25(15):e202400332. doi: 10.1002/cphc.202400332. Epub 2024 Jun 5.
A series of NaGdSiO: y Dy-x Eu phosphors were synthesized by a high-temperature solid-phase method. The optimal doping ion concentration of Dy ions for this phosphor was determined to be 1 % from the emission spectra. The energy transfer between Dy and Eu ions at 351 nm was investigated by photoluminescence spectra and fluorescence decay curves. At the excitation wavelengths of 275 nm, 351 nm, 366 nm, and 394 nm, a change from yellow to white to red light can be realized by adjusting the doping concentration of Eu/Dy ions. Particularly, by testing the temperature-dependent fluorescence spectrum of the phosphor, it can be found that the luminous intensity of the phosphor is as high as 96 % when 394 nm excitation is employed at 413 K. It was the maximum at this temperature comparing with other phosphors as far as we know. The color coordinate values show that the NaGdSiO:×Dy-y Eu phosphors are very close to the white light color coordinates (x=0.33, y=0.33) under 351 nm excitation. Meanwhile, the correlated color temperature is between 5062-7104 K. These results indicate that this phosphor is a promising candidate for high-quality WLED.
采用高温固相法合成了一系列NaGdSiO:y Dy-x Eu荧光粉。从发射光谱确定该荧光粉中Dy离子的最佳掺杂离子浓度为1%。通过光致发光光谱和荧光衰减曲线研究了Dy和Eu离子在351 nm处的能量转移。在275 nm、351 nm、366 nm和394 nm的激发波长下,通过调节Eu/Dy离子的掺杂浓度可实现从黄光到白光再到红光的变化。特别地,通过测试荧光粉的温度相关荧光光谱发现,在413 K采用394 nm激发时,荧光粉的发光强度高达96%。据我们所知,在该温度下与其他荧光粉相比这是最高的。色坐标值表明,NaGdSiO:×Dy-y Eu荧光粉在351 nm激发下非常接近白光色坐标(x = 0.33,y = 0.33)。同时,相关色温在5062 - 7104 K之间。这些结果表明该荧光粉是高质量白光发光二极管的有前途的候选材料。