Lee Szu-Ping, Huang Chien-Hao, Chan Ting-Shan, Chen Teng-Ming
Phosphors Research Laboratory, Department of Applied Chemistry and Institute of Molecular Science, National Chiao Tung University , Hsinchu 30010, Taiwan.
ACS Appl Mater Interfaces. 2014 May 28;6(10):7260-7. doi: 10.1021/am500483j. Epub 2014 May 6.
A new Ce(3+)-activated thiosilicate phosphor, BaLa2Si2S8:Ce(3+), was synthesized by using solid-state methods in a fused silica ampule and found to crystallize in the structure type of La2PbSi2S8. The crystal structure has been characterized by synchrotron X-ray diffraction and refined with Rietveld methods. This novel cyan-emitting phosphor can be excited over a broad range from UV to blue light (380-450 nm) and generates a broadband emission peaking at 471 nm with a quantum efficiency of 36%. Nonradiative transitions between Ce(3+) ions in BaLa2Si2S8:Ce(3+) have also been demonstrated to be attributable to dipole-dipole interactions, and the critical distance was calculated to be 17.41 Å. When BaLa2Si2S8:Ce(3+) phosphor was utilized to incorporate with yellow-emitting (Sr,Ca)2SiO4:Eu(2+) phosphor and red-emitting CaAlSiN3:Eu(2+) phosphor on a 430 nm blue LED chip, a warm white light LED device with color rendering index of ∼96 was obtained. The results indicate that cyan-emitting BaLa2Si2S8:Ce(3+) can serve as a potential phosphor for incorporation in fabrication of solid-state lighting. The preparation, spectroscopic characterization, quantum efficiency, decay lifetime, thermal-quenching behavior, and related LED device data are also presented.
采用固态法在熔融石英安瓿中合成了一种新型Ce(3+)激活的硫代硅酸盐荧光粉BaLa2Si2S8:Ce(3+),发现其晶体结构类型为La2PbSi2S8。通过同步辐射X射线衍射对晶体结构进行了表征,并采用Rietveld方法进行了精修。这种新型的发蓝光荧光粉在紫外光到蓝光的宽波段(380 - 450 nm)范围内均可被激发,产生一个在471 nm处峰值的宽带发射,量子效率为36%。还证明了BaLa2Si2S8:Ce(3+)中Ce(3+)离子之间的非辐射跃迁归因于偶极 - 偶极相互作用,计算得到的临界距离为17.41 Å。当将BaLa2Si2S8:Ce(3+)荧光粉与430 nm蓝色发光二极管芯片上的发黄光的(Sr,Ca)2SiO4:Eu(2+)荧光粉和发红光的CaAlSiN3:Eu(2+)荧光粉结合使用时,获得了显色指数约为96的暖白光发光二极管器件。结果表明,发蓝光的BaLa2Si2S8:Ce(3+)可作为一种潜在的荧光粉用于固态照明的制造。文中还给出了其制备、光谱表征、量子效率、衰减寿命、热猝灭行为以及相关发光二极管器件数据。