Literature DB >> 30394727

Layered Structure Produced Nonconcentration Quenching in a Novel Eu3+-Doped Phosphor.

Junhao Li1, Qiongyun Liang1, Yangfei Cao1, Jing Yan1, Jianbang Zhou1, Yiqin Xu2, Leonid Dolgov1, Yuying Meng1, Jianxin Shi1, Mingmei Wu1.   

Abstract

Energy migration (energy transfer among identical luminescence centers) is always thought to be related to the concentration quenching in luminescence materials. However, the novel Eu3+-doped Ba6Gd2Ti4O17 phosphor seems to be an exception. In the series of Ba6Gd2(1- x)Ti4O17: xEu3+ ( x = 0.1, 0.3, 0.5, 0.7, and 0.9) phosphors prepared and investigated, no concentration quenching is found. Detailed investigations of the crystal structure and the luminescence properties of Ba6Gd2(1- x)Ti4O17: xEu3+ reveal that the nonoccurrence of concentration quenching is related to the dimensional restriction of energy migration inside the crystal lattices. In Ba6Gd2Ti4O17, directly increasing the number of Eu3+ ions to absorb as much excitation energy as possible allows to achieve a higher brightness. The highly Eu3+-doped Ba6Gd2(1- x)Ti4O17: xEu3+ ( x = 0.9) sample can convert near-UV excitation into red light, whose Commission Internationale de l'Eclairage (CIE) coordinates are (0.64, 0.36) and the color purity can reach up to 94.4%. Moreover, warm white light with the CIE chromaticity coordinates of (0.39, 0.39), the correlated color temperature of 3756 K, and the color rendering index of 82.2 is successfully generated by fabricating this highly Eu3+-doped phosphor in a near-UV light-emitting diode chip together with the green YGAB:Tb3+ and blue BAM:Eu2+ phosphors.

Entities:  

Keywords:  Ba6Gd2Ti4O17 host; Eu3+-doped phosphor; energy migration; light-emitting diodes; nonconcentration quenching

Year:  2018        PMID: 30394727     DOI: 10.1021/acsami.8b13759

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  2 in total

1.  Strategies for Designing Antithermal-Quenching Red Phosphors.

Authors:  Yi Wei; Hang Yang; Zhiyu Gao; Yixin Liu; Gongcheng Xing; Peipei Dang; Abdulaziz A Al Kheraif; Guogang Li; Jun Lin; Ru-Shi Liu
Journal:  Adv Sci (Weinh)       Date:  2020-02-29       Impact factor: 16.806

2.  Highly efficient red-emitting Ca2YSbO6:Eu3+ double perovskite phosphors for warm WLEDs.

Authors:  Meijiao Liu; Biao Shen; Keyuan Wang; Jiasong Zhong; Daqin Chen
Journal:  RSC Adv       Date:  2019-07-03       Impact factor: 4.036

  2 in total

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