Enhancement on Tb3+ luminescence in CaScBO4-based ceramic phosphors by Ce3+-induced resonance energy transfer and the generation of white light emission collaborated with Mn2+
暂无分享,去创建一个
Junhao Li | Haiyong Ni | Jiansheng Huo | Qiuhong Zhang | Jianbang Zhou | F. Xie | Meng Kuang | Jianhong Ding | Yunfeng Wang
[1] Junhao Li,et al. Enlarging Sensitivity of Fluorescence Intensity Ratio-Type Thermometers by the Interruption of the Energy Transfer from a Sensitizer to an Activator. , 2022, Inorganic chemistry.
[2] Junhao Li,et al. Sensitization of Mn2+ luminescence via efficient energy transfer to suit the application of high color rendering WLEDs. , 2022, Dalton transactions.
[3] J. Li,et al. Efficient Ce3+→Tb3+ energy transfer pairs toward thermal-stability and internal quantum efficiency close to unity , 2022, Inorganic Chemistry Frontiers.
[4] Zhao‐Qing Liu,et al. Compensation effect of electron traps for enhanced fluorescence intensity ratio thermometry performance , 2022, Inorganic Chemistry Frontiers.
[5] Qianming Wang,et al. Realization of an Optical Thermometer via Structural Confinement and Energy Transfer. , 2021, Inorganic chemistry.
[6] Mingming Yang,et al. A novel Dy3+-activated single-phase white light-emitting phosphor for solid-state lighting , 2021 .
[7] Qianming Wang,et al. Extension of Spectral Shift Controls from Equivalent Substitution to an Energy Migration Model Based on Eu2+/Tb3+-Activated Ba4-xSrxGd3-xLuxNa3(PO4)6F2 Phosphors. , 2021, Inorganic chemistry.
[8] W. Xie,et al. A novel Eu3+-doped ScCaO(BO3) red phosphor for tricolor-composited high color rendering white light , 2021 .
[9] Junhao Li,et al. Color tunable Ca8ZnM(PO4)7 (M = Lu/Tb, Lu/Eu, Tb/Eu) phosphors: luminescence, energy transfer and thermal stability studies for n-UV white LEDs. , 2021, Dalton transactions.
[10] Mingmei Wu,et al. CaY2Al4SiO12:Ce3+,Mn2+: a single component phosphor to produce high color rendering index WLEDs with a blue chip , 2021, Journal of Materials Chemistry C.
[11] Z. Xia,et al. Tailoring of White Luminescence in a NaLi3SiO4:Eu2+ Phosphor Containing Broad‐Band Defect‐Induced Charge‐Transfer Emission , 2021, Advanced materials.
[12] Xianju Zhou,et al. Opposite temperature luminescent behaviours of Tb3+ and Pr3+ co-doped BaMoO4 glass ceramics for temperature sensing , 2021 .
[13] Xiaoyong Huang,et al. Ultra-high color rendering warm-white light-emitting diodes based on an efficient green-emitting garnet phosphor for solid-state lighting , 2021 .
[14] M. Murugesu,et al. Untapped potentials of lanthanide-based molecular cluster-aggregates: Optical barcoding and white-light emission with nanosized {Ln20} compound. , 2020, Angewandte Chemie.
[15] Junhao Li,et al. Terbium-fluorido cluster: an energy cage for photoluminescence. , 2020, Chemical communications.
[16] K. Cao,et al. Dual-shelled RbLi(Li3SiO4)2:Eu2+@Al2O3@ODTMS phosphor as a stable green emitter for high-power LED Backlights. , 2020, Angewandte Chemie.
[17] S. H. Park,et al. Dual-functional of non-contact thermometry and field emission displays via efficient Bi3+ → Eu3+ energy transfer in emitting-color tunable GdNbO4 phosphors , 2020 .
[18] S. Ong,et al. Engineering of K3YSi2O7 To Tune Photoluminescence with Selected Activators and Site Occupancy , 2019, Chemistry of Materials.
[19] Xinguo Zhang,et al. Luminescence of K2BaCa(PO4)2: Ce3+, Tb3+ dual-emitting phosphor and its application as ratiometric optical thermometer , 2019, Ceramics International.
[20] Qianming Wang,et al. Effective assembly of a novel aluminum-oxynitride BaAl11O16N activated by Eu2+ and Mn2+ via salt-flux assistance and its photophysical investigation , 2019, Journal of Alloys and Compounds.
[21] Jilin Zhang,et al. Dopant preferential site occupation and high efficiency white emission in K2BaCa(PO4)2:Eu2+,Mn2+ phosphors for high quality white LED applications , 2019, Inorganic Chemistry Frontiers.
[22] Jun Lin,et al. Controllable optical tuning and improvement in Li+,Eu3+-codoped BaSc2O4:Bi3+ based on energy transfer and charge compensation , 2018 .
[23] Mingmei Wu,et al. White Light Emission and Enhanced Color Stability in a Single-Component Host. , 2018, ACS applied materials & interfaces.
[24] Mingmei Wu,et al. Luminescence properties and energy transfer of YGa1.5Al1.5(BO3)4:Tb3+,Eu3+ as a multi-colour emitting phosphor for WLEDs , 2017 .
[25] Mingmei Wu,et al. Advanced red phosphors for white light-emitting diodes , 2016 .
[26] J. Yu,et al. Photoluminescence and electron-beam excitation induced cathodoluminescence properties of novel green-emitting Ba4La6O(SiO4)6:Tb3+phosphors , 2016 .
[27] Haiyong Ni,et al. Luminescence properties and energy transfer of GdAl3(BO3)4:Ce3+, Tb3+ phosphor , 2016 .
[28] Jun Lin,et al. Recent progress in luminescence tuning of Ce(3+) and Eu(2+)-activated phosphors for pc-WLEDs. , 2015, Chemical Society reviews.
[29] Mingmei Wu,et al. Photoluminescence properties of color-tunable novel Na2Ca4(PO4)2SiO4:Ce3+, Tb3+ near ultraviolet convertible phosphors , 2014 .
[30] Ru‐Shi Liu,et al. Tunable Blue-Green Color Emission and Energy Transfer of Ca2Al3O6F:Ce3+,Tb3+ Phosphors for Near-UV White LEDs , 2012 .
[31] G. Blasse. Energy transfer in oxidic phosphors , 1968 .