Pathak Nimai, Alolayan Abdulelah, Ali Kawsar, Zhang Yuchen, Mao Yuanbing
Department of Chemistry, Illinois Institute of Technology, Chicago, 60616, IL, USA.
Radiochemistry Division, Bhabha Atomic Research Centre, Mumbai, 400085, India.
Chemphyschem. 2025 Aug 23;26(16):e202500171. doi: 10.1002/cphc.202500171. Epub 2025 Jul 16.
Achieving multimodal luminescence within a single phosphor is vital for multifunctional applications but remains challenging due to complex color tuning and trap engineering. In this study, we report Pr and Gd co-doped LaAlO (LAO:PG) phosphors, designed through careful modulation of multilevel traps and Pr → Gd energy transfer dynamics. These materials exhibit diverse luminescence modes, including down-conversion luminescence (DCL), up-conversion luminescence (UCL), persistent luminescence (PersL), optically stimulated luminescence (OSL), and thermally stimulated luminescence (TSL) across a wide spectral range. Unlike previously studied Pr-doped LAO, the co-doped LAO:PG shows DCL in both UV-visible and NIR regions and displays ultraviolet-C UCL under visible excitation. Notably, we observe, for the first time, PersL lasting several minutes in these phosphors-an improvement over the non-PersL behavior of Pr -only doped LAO. Additionally, the LAO:PG phosphors exhibit strong OSL response. TSL analysis reveals five distinct trap levels linked to these properties. Density functional theory calculations further correlate intrinsic defects to these traps, supporting a proposed mechanism for the observed multimodal luminescence. These findings highlight LAO:PG as a promising platform for developing advanced phosphors with integrated luminescence modes, paving the way for future applications in data storage, phototherapy, and anti-counterfeiting technologies.
在单一荧光粉中实现多模态发光对于多功能应用至关重要,但由于复杂的颜色调节和陷阱工程,仍然具有挑战性。在本研究中,我们报告了通过精心调制多级陷阱和Pr→Gd能量传递动力学设计的Pr和Gd共掺杂的LaAlO(LAO:PG)荧光粉。这些材料在很宽的光谱范围内表现出多种发光模式,包括下转换发光(DCL)、上转换发光(UCL)、持续发光(PersL)、光激发发光(OSL)和热激发发光(TSL)。与先前研究的Pr掺杂LAO不同,共掺杂的LAO:PG在紫外-可见光和近红外区域均显示DCL,并在可见光激发下显示紫外-C UCL。值得注意的是,我们首次在这些荧光粉中观察到持续几分钟的PersL,这比仅Pr掺杂的LAO的非持续发光行为有所改善。此外,LAO:PG荧光粉表现出强烈的OSL响应。TSL分析揭示了与这些特性相关的五个不同的陷阱能级。密度泛函理论计算进一步将本征缺陷与这些陷阱相关联,支持了所观察到的多模态发光的 proposed 机制。这些发现突出了LAO:PG作为开发具有集成发光模式的先进荧光粉的有前途的平台,为未来在数据存储、光疗和防伪技术中的应用铺平了道路。