Prasad Manisha, Rai Vineet Kumar
Laser and Spectroscopy Laboratory, Department of Physics, Indian Institute of Technology (Indian School of Mines) Dhanbad 826004 Jharkhand India
RSC Adv. 2023 Jul 6;13(29):20342-20350. doi: 10.1039/d3ra02894a. eCollection 2023 Jun 29.
The developed SnWO phosphors incorporated with Ho, Yb and Mn ions have been explored under 980 nm laser irradiation. The molar concentration of dopants has been optimized to 0.5 Ho, 3.0 Yb and 5.0 Mn in SnWO phosphors. The upconversion (UC) emission from the codoped SnWO phosphors has been substantially amplified up to 13 times and described based on the energy transfer and charge compensation. On incorporating the Mn ions in the Ho/Yb codoped system the sharp green luminescence shifted to reddish broadband emission due to the photon avalanche mechanism. The processes accountable for the concentration quenching have been described based on critical distance. The interaction responsible for the concentration quenching in Yb sensitized Ho and Ho/Mn:SnWO phosphors is considered to be dipole-quadrupole and exchange interaction type, respectively. The activation energy 0.19 eV has been determined, and the phenomenon of thermal quenching is discussed using a configuration coordinate diagram.
已对掺入Ho、Yb和Mn离子的SnWO磷光体在980 nm激光照射下进行了研究。在SnWO磷光体中,掺杂剂的摩尔浓度已优化为0.5 Ho、3.0 Yb和5.0 Mn。共掺杂的SnWO磷光体的上转换(UC)发射已大幅放大至13倍,并基于能量转移和电荷补偿进行了描述。在Ho/Yb共掺杂体系中掺入Mn离子后,由于光子雪崩机制,尖锐的绿色发光转变为微红宽带发射。基于临界距离描述了导致浓度猝灭的过程。Yb敏化的Ho和Ho/Mn:SnWO磷光体中导致浓度猝灭的相互作用分别被认为是偶极-四极和交换相互作用类型。已确定激活能为0.19 eV,并使用组态坐标图讨论了热猝灭现象。