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Multiple Energy Transfer in Luminescence-Tunable Single-Phased Phosphor NaGdTiO4: Tm3+, Dy3+, Sm3.


ABSTRACT: Advances in solid-state white-light-emitting diodes (WLEDs) necessitate the urgent development of highly efficient single-phase phosphors with tunable photoluminescence properties. Herein, the Tm3+, Dy3+, and Sm3+ ions are incorporated into the orthorhombic NaGdTiO4 (NGT) phosphors, resulting in phosphors that fulfill the aforementioned requirement. The emission spectrum of Tm3+ ions overlaps well with the adsorption spectra of both Dy3+ and Sm3+ ions. Under the excitation at 358 nm, the single-phase NaGdTiO4: Tm3+, Dy3+, Sm3+ phosphor exhibits tunable emission peaks in the blue, yellow, and red regions simultaneously, resulting in an intense white-light emission. The coexisting energy transfer behaviors from Tm3+ to Dy3+ and Sm3+ ions and the energy transfer from Dy3+ to Sm3+ ions are demonstrated to be responsible for this phenomenon. The phosphors with multiple energy transfers enable the development of single-phase white-light-emitting phosphors for phosphor-converted WLEDs.

SUBMITTER: Xiao J 

PROVIDER: S-EPMC7407989 | biostudies-literature | 2020 Jun

REPOSITORIES: biostudies-literature

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Multiple Energy Transfer in Luminescence-Tunable Single-Phased Phosphor NaGdTiO<sub>4</sub>: Tm<sup>3+</sup>, Dy<sup>3+</sup>, Sm<sup>3</sup>.

Xiao Jun J   Wang Cong C   Min Xin X   Wu Xiaowen X   Liu Yangai Y   Huang Zhaohui Z   Fang Minghao M  

Nanomaterials (Basel, Switzerland) 20200627 7


Advances in solid-state white-light-emitting diodes (WLEDs) necessitate the urgent development of highly efficient single-phase phosphors with tunable photoluminescence properties. Herein, the Tm<sup>3+</sup>, Dy<sup>3+</sup>, and Sm<sup>3+</sup> ions are incorporated into the orthorhombic NaGdTiO<sub>4</sub> (NGT) phosphors, resulting in phosphors that fulfill the aforementioned requirement. The emission spectrum of Tm<sup>3+</sup> ions overlaps well with the adsorption spectra of both Dy<sup>3  ...[more]

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