首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Insights into Ba4Si6O16 structure and photoluminescence tuning of Ba4Si6O16:Ce3+,Eu2+ phosphors
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Insights into Ba4Si6O16 structure and photoluminescence tuning of Ba4Si6O16:Ce3+,Eu2+ phosphors

机译:洞察Ba4Si6O16结构和Ba4Si6O16:Ce3 +,Eu2 +荧光粉的光致发光调谐

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摘要

The versatile polymorphism and chemical compositions of barium silicates have been studied for a long time and their crystal structures have been established. Herein, we focused on the understanding of the crystal structure of the Ba4Si6O16 phase and the structural correlation of Ba4Si6O16 and Ba2Si3O8; moreover, the luminescence properties of Ce3+,Eu2+-co-activated Ba4Si6O16 phosphors have been discussed. Ba4Si6O16:Ce3+,Eu2+ phosphors show tunable blue-green emission upon excitation with 365 nm ultraviolet (UV) light. The blue emission originates from Ce3+, whereas the bluish-green emission is ascribed to Eu2+, and variation in the emission peak wavelength from 442 to 497 nm can be achieved by properly tuning the Ce3+/Eu2+ ratio. Energy transfer from Ce3+ to Eu2+ in the Ba4Si6O16 host has been validated by the variation of emission spectra as well as the variation of Ce3+ decay lifetimes with increasing Eu2+ concentration, and the energy transfer mechanism is demonstrated to be a resonant type via a dipole-dipole process. The results suggest that Ba4Si6O16:Ce3+,Eu2+ phosphors are potential candidates as a blue-green component for UV-excited white light-emitting diodes.
机译:硅酸钡的多态性和化学组成已经被研究了很长时间,并且已经确定了它们的晶体结构。在此,我们着重于对Ba4Si6O16相的晶体结构以及Ba4Si6O16和Ba2Si3O8的结构相关性的理解。此外,还讨论了Ce3 +,Eu2 +-共激活的Ba4Si6O16荧光粉的发光特性。 Ba4Si6O16:Ce3 +,Eu2 +荧光粉在365 nm紫外线(UV)激发后显示出可调的蓝绿色发射。蓝色发射源自Ce3 +,而蓝绿色发射归因于Eu2 +,并且可以通过适当调整Ce3 + / Eu2 +的比值来实现发射峰波长从442至497 nm的变化。通过发射光谱的变化以及随着Eu2 +浓度的增加Ce3 +衰变寿命的变化,已经验证了Ba4Si6O16主体中Ce3 +到Eu2 +的能量转移,并通过偶极-偶极子证明了能量转移机制是共振类型。处理。结果表明,Ba4Si6O16:Ce3 +,Eu2 +荧光粉是紫外线激发的白色发光二极管蓝绿色组分的潜在候选物。

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