State Key Laboratory of Rare Earth Resource Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, 130022, PR China.
Dalton Trans. 2012 Aug 7;41(29):8861-8. doi: 10.1039/c2dt30670k. Epub 2012 Jun 15.
Green emitting Li(2)ZnGeO(4):Mn(2+) phosphors were synthesized through a high temperature solid-state reaction process. X-Ray diffraction, field emission scanning electron microscopy, photoluminescence (PL) and cathodoluminescence (CL) spectra were utilized to characterize the synthesized samples. Under UV and electron-beam excitation, the pure Li(2)ZnGeO(4) sample shows a blue emission due to defects, while the Li(2)ZnGeO(4):Mn(2+) sample exhibits a green emission corresponding to the characteristic transition of Mn(2+) ((4)T(1)→(6)A(1)). In particular, the CL intensity (brightness) of Li(2)ZnGeO(4):Mn(2+) is higher than that of commercial green phosphor ZnO:Zn. In addition, the CL properties of Li(2)ZnGeO(4):Mn(2+) phosphor, the dependence of CL intensity on accelerating voltage and filament current, the decay behavior of CL intensity under electron bombardment, and the stability of CIE chromaticity coordinates, have been investigated in detail. The results indicate that the as-prepared Li(2)ZnGeO(4):Mn(2+) phosphor has a good CL intensity and CIE coordinate stability with green emission under low-voltage electron beam excitation. Therefore, Li(2)ZnGeO(4):Mn(2+) is a promising green phosphor for application in full-color field-emission displays.
绿色发光 Li(2)ZnGeO(4):Mn(2+) 荧光粉通过高温固相反应法合成。采用 X 射线衍射、场发射扫描电子显微镜、光致发光(PL)和阴极发光(CL)谱对合成样品进行了表征。在紫外光和电子束激发下,纯 Li(2)ZnGeO(4) 样品由于缺陷而呈现蓝色发射,而 Li(2)ZnGeO(4):Mn(2+) 样品则呈现出对应于 Mn(2+)((4)T(1)→(6)A(1))特征跃迁的绿色发射。特别是,Li(2)ZnGeO(4):Mn(2+) 的 CL 强度(亮度)高于商用绿色荧光粉 ZnO:Zn。此外,详细研究了 Li(2)ZnGeO(4):Mn(2+) 荧光粉的 CL 性质、CL 强度对加速电压和灯丝电流的依赖性、电子束轰击下 CL 强度的衰减行为以及 CIE 色度坐标的稳定性。结果表明,所制备的 Li(2)ZnGeO(4):Mn(2+) 荧光粉在低压电子束激发下具有良好的 CL 强度和 CIE 坐标稳定性,呈绿色发射。因此,Li(2)ZnGeO(4):Mn(2+) 是一种很有前途的全彩色场发射显示器用绿色荧光粉。