标题: 稀土氟化物萤光体量子剪裁与发光特性之研究
A Study on the Quantum-Cutting and Photoluminescence of Alkaline-Earth Gadolinium Fluorides
作者: 曾馨怡
陈登铭
应用化学系硕博士班
关键字: 真空紫外光;量子剪裁;稀土氟化物;硷土金属;VUV;Quantum cutting;Rare-earth fluoride;Alkaline earth
公开日期: 2004
摘要: 本研究利用量子剪裁效应的原理,设计BaGdF5:R3+及Ca22Gd3F53:R3+(R=Eu, Er, Tb)两系列氟化物萤光体,并利用Gd3+-Eu3+、Gd3+-Er3+及Gd3+-Tb3+稀土离子组合之下转换机制,成功地开发可见光量子效率大于100%的真空紫外萤光材料。在含Gd3+-Eu3+组合的BaGdF5:Eu与Ca22Gd3F53:Eu中,藉由交叉松弛及直接能量转移两步骤的能量转移,分别可得到最高可见光区整体量子效率值137%及144%;而在含Gd3+-Er3+组合的萤光体中,仅在BaGdF5:Er3+中观察到量子剪裁的现象,其最高可见光区整体量子效率为115%,在此氟化物中Er3+为主要的量子剪裁离子,利用交叉松弛所产生额外的光子放射,达到量子效率提升的目的。
又在含Gd3+-Tb3+组合的BaGdF5:Tb与Ca22Gd3F53:Tb中,其量子剪裁及光子放射均发生在Tb3+离子上,当Tb3+离子受激发而跃升至4f75d能态时,可藉交叉松弛能量转移激发并提升另一邻近Tb3+离子,使其放射出一可见光光子,而本身则缓解至4f8激发态,随后放射出第二个光子,故其可见光区整体量子效率超过100%。在波长215 nm与187 nm激发下,BaGdF5:Tb3+(15%)之最高可见光区整体量子效率可分别达168%及180%;而在波长212 nm与186 nm激发下,Ca22Gd3F53:Tb3+(9%)之最高可见光区整体量子效率则为154%及129%。
The advancement of luminescent materials for plasma display panel (PDP) and mercury-free lighting devices is highly dependent on the development of vacuum ultraviolet (VUV) excited phosphors. The research is attempted to investigate the VUV luminescence spectroscopy, visible quantum cutting and design of phosphors based on the energy levels for lanthanide ions in the VUV range.
The occurrence of visible quantum cutting (QC) via downconversion has been observed and investigated in two series of newly discovered R3+ (R = Eu,Tb,Er)-doped gadolinium fluorides of Ca22(Gd1-xRx)3F53 and Ba(Gd1-yRy)F5 synthesized by sealed-tube solid-state reactions at 1,000℃ and 800℃, respectively. In the QC process, one UV photon absorbed by quantum cutter Gd3+ was found to split into more than one visible photon emitted via a two-step energy transfer (cross-relaxation and direct energy transfer) from the Gd3+ 6GJ level to Eu3+ ions and results in increasing quantum efficiency. Our results indicate that a visible quantum efficiency of 144% (□ex = 195 nm) and 137% (□ex = 195 nm) has been achieved in Ca22Gd3F53:Eu3+(7%) and BaGdF5:Eu3+(7%), respectively.
On the other hand, Tb3+ acts as a quantum cutter in the green-emitting Ca22(Gd1-xTbx)3F53 and Ba(Gd1-yTby)F5 with Gd3+-Tb3+ QC couple. Upon VUV excitation in the Tb3+ 4f75d levels, energy can be transferred to another Tb3+ by cross relaxation and only feeds the 5D4 level, which makes only the relative intensity of 5D4→7FJ emission increase. The calculated visible quantum efficiency has been found to be 168% (□ex = 215 nm) and 180% (□ex = 187 nm) for BaGdF5:Eu3+(15%) and 154% (□ex = 212 nm) and 129% (□ex = 186 nm) for Ca22Gd3F53:Eu3+(9%), respectively.
Finally, in the Er3+-activated Ca22Gd3F53 and BaGdF5 phosphors, only BaGdF5:Er3+, but not Ca22Gd3F53:Er3+, was found to exhibit apparent QC giving a visible quantum efficiency of 115% observed in BaGdF5:Eu3+(9%). The occurrence of the cross relaxation causes the population of Er3+ 4S3/2 state and it subsequently emits an extra photon.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT009225525
http://hdl.handle.net/11536/76815
显示于类别:Thesis


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