首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Sr2Y8(SiO4)(6)O-2:Bi3+/Eu3+: a single-component white-emitting phosphor via energy transfer for UV w-LEDs
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Sr2Y8(SiO4)(6)O-2:Bi3+/Eu3+: a single-component white-emitting phosphor via energy transfer for UV w-LEDs

机译:Sr2Y8(SiO4)(6)O-2:Bi3 + / Eu3 +:通过能量转移的单组分发白光的荧光粉,用于UV w-LED

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摘要

A series of Bi3+,Eu3+-doped Sr2Y8(SiO4)(6)O-2 (SYSO) phosphors were synthesized by the Pechini-type sol-gel route. XRD patterns, Rietveld refinement, FT-IR spectra, photoluminescence spectra (PL), fluorescence decay time, and quantum yields (QYs) were utilized to characterize the as-prepared samples. Intense blue-green emission due to the P-3(1) -> S-1(0) transition of Bi3+ ions is produced under UV excitation in Bi3+ singly doped SYSO samples. Spectral analysis illustrates that two kinds of Bi3+ ions are generated by occupying the two kinds of sites (4f and 6h) available for Y in SYSO, denoted as Bi3+(1) and Bi3+(2), corresponding to the two main emission bands at around 413 and 493 nm, respectively. A wide spectral overlap between Bi3+ emission and Eu3+ excitation spectra results in the energy transfer from Bi3+ to Eu3+. This has been demonstrated via the excitation spectra monitored at Bi3+ and Eu3+ emission bands, and the PL emission spectra and decay time of Bi3+ in SYSO:Bi3+,Eu3+ phosphors. The energy transfer mechanism is determined to be dipole-quadrupole interaction. The critical distance of energy transfer from Bi3+ to Eu3+ ions is calculated to be 12.78 angstrom based on the concentration quenching method, which is in good agreement with that of the spectral overlap route (10.03-13.37 angstrom). Moreover, the QYs, CIE chromaticity and thermal quenching properties have also been investigated. White emission color can be realized with the CIE coordinates (0.325, 0.311) and QY 52% for SYSO:0.08Bi(3+),0.48Eu(3+). The above results suggest that SYSO:Bi3+,Eu3+ can be a potential single-component white-emitting phosphor for UV w-LEDs.
机译:通过Pechini型溶胶-凝胶法合成了一系列Bi3 +,Eu3 +掺杂的Sr2Y8(SiO4)(6)O-2(SYSO)荧光粉。利用XRD图谱,Rietveld精制,FT-IR光谱,光致发光光谱(PL),荧光衰减时间和量子产率(QYs)表征了制备的样品。 Bi3 +单掺杂SYSO样品在UV激发下由于Bi3 +离子的P-3(1)→S-1(0)跃迁而产生强烈的蓝绿色发射。光谱分析表明,通过占据SYSO中可用于Y的两种位点(4f和6h)生成了两种Bi3 +离子,分别表示为Bi3 +(1)和Bi3 +(2),分别对应于附近的两个主要发射带。分别为413和493 nm。 Bi3 +发射光谱和Eu3 +激发光谱之间的宽光谱重叠导致能量从Bi3 +转移到Eu3 +。通过在Bi3 +和Eu3 +发射带上监测的激发光谱以及SYSO:Bi3 +,Eu3 +荧光粉中Bi3 +的PL发射光谱和衰减时间已证明了这一点。能量转移机制被确定为偶极-四极相互作用。根据浓度猝灭法计算,从Bi3 +到Eu3 +离子的能量转移的临界距离为12.78埃,这与光谱重叠途径(10.03-13.37埃)的吻合很好。此外,还研究了QY,CIE色度和热淬灭性能。对于SYSO:0.08Bi(3 +),0.48Eu(3+),可以使用CIE坐标(0.325,0.311)和QY 52%实现白色发射颜色。以上结果表明,SYSO:Bi3 +,Eu3 +可能是用于紫外w-LED的潜在的单组分发白光磷光体。

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