Im Won Bin, Kim Yong-Il, Yoo Hyoung Sun, Jeon Duk Young
Department of Materials Science and Engineering, Korea Advanced Institute of Science and Technology, Daejeon, 305-701, Republic of Korea.
Inorg Chem. 2009 Jan 19;48(2):557-64. doi: 10.1021/ic8012798.
A blue-color-emitting phosphor, (Sr(1-x),Ba(x))(3)MgSi(2)O(8):Eu(2+) (SB(x)MS:Eu(2+)), with various Ba contents, was synthesized, and its thermal stability was evaluated. Depending upon the Ba content, the dominant emission wavelength of the SB(x)MS:Eu(2+) phosphor could be tuned, and good photoluminescence (PL) properties were obtained under an excitation by a 147 nm source. The PL behavior showed that the thermal stability of SB(x)MS:Eu(2+) baked at 500 degrees C was dependent upon the Ba content. On the basis of the results of electron spin resonance on Eu(2+) and Rietveld refinement against neutron powder diffraction data of the phosphor, it was found that the improved thermal stability of SB(x)MS:Eu(2+) could be ascribed to Eu(2+) occupying preferred Sr sites among three possible locations depending upon the amount of Ba substitution. It is also inferred from this observation that the average interatomic distances between Eu(2+) and O (d(Eu-O)) of the different Sr sites may play an important role in the thermal stability of the phosphor.
合成了具有不同Ba含量的发射蓝光的磷光体(Sr(1 - x),Ba(x))(3)MgSi(2)O(8):Eu(2 +)(SB(x)MS:Eu(2 +)),并对其热稳定性进行了评估。根据Ba含量,可调节SB(x)MS:Eu(2 +)磷光体的主发射波长,并且在147 nm光源激发下获得了良好的光致发光(PL)性能。PL行为表明,在500℃下焙烧的SB(x)MS:Eu(2 +)的热稳定性取决于Ba含量。基于对Eu(2 +)的电子自旋共振结果以及针对该磷光体的中子粉末衍射数据的Rietveld精修,发现SB(x)MS:Eu(2 +)热稳定性的提高可归因于根据Ba取代量,Eu(2 +)在三个可能位置中占据优先的Sr位点。从该观察结果还可以推断,不同Sr位点的Eu(2 +)与O之间的平均原子间距离(d(Eu - O))可能在磷光体的热稳定性中起重要作用。