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Published on: April 16, 2017
Energy-Transfer-Engineered CaO:Eu2+/3+, Tb3+, Cl- Phosphor Enabling Enhanced Multicolor Luminescence, White-Light
Jingyi Jing1, Xiankai Wang1, Xiaoquan Ye1
1College of Chemistry, Jilin University, Jiefang Road 2519#, Changchun 130012, China.
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With their tunable multicolor light emission and ability to sense temperature optically, single-host multifunctional materials offer great practical promise and are thus the subject of extensive study. This study adopted a two-step approach─first a carbonation method, then a double-crucible carbon reduction process─to prepare CaO:Eu2+/3+,Tb3+,Cl- phosphor, which crystallizes in a face-centered cubic structure with the space group Fm-3m. Under ultraviolet excitation, the phosphors simultaneously emit blue light (Eu2+), green light (Tb3+), and red light (Eu3+). Notably, the introduction of Tb3+ ions, which serve as an energy bridge, not only contributes the green emission but also enhances the intensity of red light associated with the Eu3+ ions. Therefore, tuning the Tb3+ doping concentration allows the CaO:Eu2+/3+,Tb3+,Cl- phosphor to produce white light. Additionally, tunable luminescence is achievable through adjusting either the excitation wavelength or the Tb3+ concentration, and this characteristic greatly improves the material's applicability. As a consequence, the as-fabricated CaO:0.01 Eu2+/3+,0.008 Tb3+,0.06 Cl- phosphor is a promising candidate for white light-emitting diodes (WLEDs), display technologies, and optical anti-counterfeiting applications. Moreover, the material exhibits non-contact temperature sensing capability, facilitated by the fluorescence intensity ratio (FIR) method. Based on the calculated absolute (Sa) and relative sensitivities (Sr), the CaO:Eu2+/3+,Tb3+,Cl- phosphor also exhibits potential application value in optical thermometry.

