个人信息Personal Information
教授
博士生导师
硕士生导师
性别:女
毕业院校:大连理工大学
学位:博士
所在单位:化工学院
学科:化学工艺. 功能材料化学与化工. 无机化学
办公地点:西部校区化工综合楼A403
联系方式:0411-84986065
电子邮箱:ninggl@dlut.edu.cn
Tunable white-light emission via energy transfer in single-phase LiGd(WO4)(2):Re3+ (Re = Tm, Tb, Dy, Eu) phosphors for UV-excited WLEDs
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论文类型:期刊论文
发表时间:2015-10-28
发表刊物:RSC ADVANCES
收录刊物:SCIE、EI、Scopus
卷号:5
期号:117
页面范围:96272-96280
ISSN号:2046-2069
摘要:A series of novel single-phase color tunable LiGd(WO4)(2)(LGW): Re3+ (Re = Tm, Tb, Dy, Eu) phosphors have been synthesized by a solid-state reaction. X-ray diffraction (XRD), FT-IR, photoluminescence (PL) and fluorescence decay curves were utilized to characterize the as-prepared samples. Under the excitation of UV light, LGW: Tm3+, LGW: Tb3+, LGW: Dy3+ and LGW: Eu3+ exhibit the characteristic emissions of Tm3+ (blue), Tb3+ (green), Dy3+ (yellow) and Eu3+ (red), respectively. On the one hand, by simply adjusting the doping concentration of Eu3+ ions in the LGW: 2% Tm3+, 4% Tb3+, x% Eu3+ system, a white emission in a single-phase was achieved by blending simultaneously the blue, green, and red emissions of Tm3+, Tb3+, and Eu3+ ions in the LGW host, in which the energy transfer from Tb3+ to Eu3+ ions was found to play an important role. On the other hand, a white emission can also be realized based on the energy transfer from Tm3+ to Dy3+ ions in the LGW: 2% Tm3+, x% Dy3+ system. The energy transfer mechanism from Tm3+ to Dy3+ ions has been demonstrated to be through dipole-quadrupole interaction and the critical distance (RTm-Dy) calculated by the concentration quenching method is 16.03 angstrom. The PL properties of as-prepared materials indicate that LGW: Re3+ (Re = Tm, Tb, Dy, Eu) may be potentially applied as single-phase white-light-emitting phosphors for UV-excited WLEDs.