标题: | 新颖稀土掺杂氟硫化物与硫氧氟化物萤光材料之制备与发光特性研究 The Synthesis and Luminescence Characterization of Some Rare Earth-Doped Fluorosulfide and Oxyfluorosulfide Phosphors |
作者: | 陈星年 Chen, Shing-Nian 陈登铭 Chen, Teng-Ming 应用化学系分子科学硕博士班 |
关键字: | 萤光粉;发光二极体;Phosphor;LED |
公开日期: | 2011 |
摘要: | 为持续发掘新颖化学组成之白光发光二极体萤光粉,本研究利用高温固态反应于密闭石英玻璃管中,于850-1000℃与1150℃分别成功制备Ce3+与Eu2+激活之单一系列Y3S2OF3:Ce3+氟氧硫化物萤光体与四系列La2MF4S2: Ce3+ (M = Ca, Sr)与La2MF4S2:Eu2+ (M = Ca, Sr)氟硫化物萤光体。X光绕射仪、萤光光谱仪、电子显微镜被用以进行合成条件最适化与活化剂掺杂浓度测定、晶相鉴定、晶体结构精算、漫反射光谱、发光与激发光谱、温度依存热消光光谱测定、色座标值与量子效率以及萤光体微结构分析鉴定。 Y3S2OF3:Ce3+与La2MF4S2: Ce3+ (M = Ca, Sr)之激发与放射分别源自于Ce3+中电子4f 1→5d 1的吸收与5d 1→4f 1放宽带射跃迁;而La2MF4S2:Eu2+ (M = Ca, Sr)之激发与放射则分别源自于Eu2+中电子4f7 → 4f 65d 1的吸收与4f 65d 1→4f 7放宽带射跃迁。Ce3+或Eu2+掺杂之新颖氟硫化物与硫氧氟化物萤光粉,激发波长由250 nm至蓝光425 nm,而放射波长则由蓝光425 nm至红光750 nm以上,几乎涵盖了整个可见光范围。其中La2CaF4S2:Eu2+与La2SrF4S2:Eu2+皆能放射波长涵盖600至800 nm的罕见深红至红外光,尤为特别。 本研究中所合成五系列萤光体具有较传统硫化物萤光体更佳之热消光特性,具有可提供制作白光LED之潜力。 Fluorosulfide and oxyfluorosulfide-based phosphors have relatively low synthetic temperature and appropriate excitation wavelengths for applications in fabricating white-light LEDs. To enhance the thermal stability of sulfides, we choose the fluorosulfides and oxyfluorosulfide as host matrices and activated with Ce3+ and Eu2+ as activator, respectively. In this study, we have prepared five series of fluorosulfide and oxyfluorosulfide phosphors, viz., Y3S2OF3:Ce3+, La2MF4S2:Ce3+ and La2MF4S2:Eu2+(M = Ca, Sr) using sealed quartz tube at 850-1000℃and 1150℃, respectively. These phosphors can be excited by radiation with wavelength ranging from 300 nm to 500 nm and their emission colors almost cover the whole visible spectral range. The content of this thesis can be divided into two parts. Firstly, we will introduce the background knowledge of phosphors used in LEDs, and then elaborate the design rules, the motivations and goals of the study. The synthetic methods and further characterization results will be discussed in the second part. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079958513 http://hdl.handle.net/11536/50623 |
显示于类别: | Thesis |
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