首页> 外文期刊>ACS Omega >Investigation on the Luminescence Properties of InMO4 (M = V5+, Nb5+, Ta5+) Crystals Doped with Tb3+ or Yb3+ Rare Earth Ions
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Investigation on the Luminescence Properties of InMO4 (M = V5+, Nb5+, Ta5+) Crystals Doped with Tb3+ or Yb3+ Rare Earth Ions

机译:掺有Tb3 +或Yb3 +的InMO4(M = V5 +,Nb5 +,Ta5 +)晶体的发光特性研究

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We explore the potential of Tb- and Yb-doped InVO4, InTaO4, and InNbO4 for applications as phosphors for light-emitting sources. Doping below 0.2% barely change the crystal structure and Raman spectrum but provide optical excitation and emission properties in the visible and near-infrared (NIR) spectral regions. From optical measurements, the energy of the first/second direct band gaps was determined to be 3.7/4.1 eV in InVO4, 4.7/5.3 in InNbO4, and 5.6/6.1 eV in InTaO4. In the last two cases, these band gaps are larger than the fundamental band gap (being indirect gap materials), while for InVO4, a direct band gap semiconductor, the fundamental band gap is at 3.7 eV. As a consequence, this material shows a strong self-activated photoluminescence centered at 2.2 eV. The other two materials have a weak self-activated signal at 2.2 and 2.9 eV. We provide an explanation for the origin of these signals taking into account the analysis of the polyhedral coordination around the pentavalent cations (V, Nb, and Ta). Finally, the characteristic green (5D4 → 7FJ) and NIR (2F5/2 → 2F7/2) emissions of Tb3+ and Yb3+ have been analyzed and explained.
机译:我们探索了掺Tb和Yb的InVO4,InTaO4和InNbO4在用作发光源荧光粉方面的潜力。低于0.2%的掺杂几乎不会改变晶体结构和拉曼光谱,但会在可见光和近红外(NIR)光谱区域提供光学激发和发射特性。根据光学测量,确定第一/第二直接带隙的能量在InVO4中为3.7 / 4.1 eV,在InNbO4中为4.7 / 5.3,在InTaO4中为5.6 / 6.1 eV。在后两种情况下,这些带隙大于基带隙(是间接带隙材料),而对于InVO4(直接带隙半导体),基带隙为3.7 eV。结果,该材料显示出以2.2eV为中心的强的自活化光致发光。其他两种材料在2.2和2.9 eV时具有弱的自激活信号。考虑到围绕五价阳离子(V,Nb和Ta)的多面体配位的分析,我们对这些信号的起源进行了解释。最后,分析并解释了Tb3 +和Yb3 +的特征性绿色(5D4→7FJ)和NIR(2F5 / 2→2F7 / 2)发射。

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