Li Daming, Guo Shoulian, An Lina, Zhang Luoyun, Mei Zihan, Cheng Peiyuan, Wang Xinyu, Liu Sisi, Wang Zhenbin
School of Chemistry and Chemical Engineering, Qinghai Normal University, Xining, China.
A Qinghai Key Laboratory of Advanced Technology and Application of Environmental Functional Materials, Xining, China.
Luminescence. 2025 Aug;40(8):e70279. doi: 10.1002/bio.70279.
Persistent luminescence materials are photoluminescent substances and are extensively utilized in safety and emergency systems, information encryption, anti-counterfeiting, decorative applications, etc. However, most phosphors require excitation in the ultraviolet region of the spectrum, which limits their use in specialized applications. Hence, the development of persistent luminescence phosphors capable of excitation under blue light is of critical importance. Bright green light CaMgAlGaSiO:x%Eu phosphors were synthesized by the high-temperature solid-state reaction method. After Rietveld refinement, the results showed that R = 7.85%, R = 5.36%, χ = 2.12. The space group of the CaMgAlGaSiO structure is P-421 m. Ca is surrounded by 8 O ions, forming a Cs point-symmetric CaO polyhedron. Ca and Eu share their crystal structure sites and connect eight O to form Ca/EuO. Based on the diffuse reflectance spectrum, the optical band energy (Eg) value for CMAGSO:0.1%Eu was calculated to be approximately 4.02 eV. The presence of only one broad peak between 35°C and 150°C in the thermoluminescence spectra indicates that there is only one trap in these samples. Through calculation, it can be known that the depth of the trap is between 0.65 and 0.66 eV. The prepared phosphor materials have good application prospects in security and emergency response systems, information encryption, anti-counterfeiting.
持久发光材料是光致发光物质,广泛应用于安全和应急系统、信息加密、防伪、装饰应用等领域。然而,大多数磷光体需要在光谱的紫外区域激发,这限制了它们在特殊应用中的使用。因此,开发能够在蓝光下激发的持久发光磷光体至关重要。采用高温固相反应法合成了亮绿色的CaMgAlGaSiO:x%Eu磷光体。经过Rietveld精修后,结果表明R=7.85%,R=5.36%,χ=2.12。CaMgAlGaSiO结构的空间群为P-421 m。Ca被8个O离子包围,形成一个Cs点对称的CaO多面体。Ca和Eu共享它们的晶体结构位点,并连接8个O形成Ca/EuO。基于漫反射光谱,计算出CMAGSO:0.1%Eu的光学带隙(Eg)值约为4.02 eV。热释光光谱中在35°C至150°C之间仅存在一个宽峰,表明这些样品中只有一个陷阱。通过计算可知,陷阱深度在0.65至0.66 eV之间。制备的磷光体材料在安全和应急响应系统、信息加密、防伪方面具有良好的应用前景。