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A valence states approach for luminescence enhancement by low dopant concentration in Eu-doped ZnO nanoparticles

机译:价态方法通过低掺杂浓度的Eu掺杂ZnO纳米粒子增强发光

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摘要

The paper presents a simple, reproducible, controllable, and direct wet chemical synthesis method for Zn1-x Eu (x) O nanoparticles. The full understanding of decomposition mechanism of the as-obtained oxalate precipitate was achieved based on the thermal analysis correlated with the evolved gas analysis and FTIR spectroscopy. The structure, morphology, and optical luminescent properties of the Zn1-x Eu (x) O nanoparticles have been investigated by X-ray diffraction, Raman spectroscopy, HRTEM, SAED, XPS, and PL. The XRD studies reveal the formation of a hexagonal wurtzite-type structure. The presence of Eu2O3 cubic structure can be observed up to 0.5 mol% Eu, suggesting that the solubility of the divalent or trivalent Eu into the ZnO lattice is limited. The formation of Eu2O3 secondary phase at higher Eu concentration is sustained by Raman spectroscopy and XPS, as well. The TEM investigations of the Eu-doped ZnO samples illustrate the presence of aggregates with different shapes and dimensions formed by agglomerated spherical and polyhedral nanoparticles with sizes ranging from 20 to 120 nm. The effect of europium concentration on the structural and morphological characteristics, as well as on the luminescent properties was studied with special emphasis on the europium chemical states-Eu2+ and Eu3+. The PL measurements sustain the presence of both divalent and trivalent europium ions into the ZnO host lattice and, at the same time, an increase of its defects density induced by the dopant presence.
机译:本文提出了一种简单,可重现,可控制和直接湿法化学合成Zn1-x Eu(x)O纳米粒子的方法。基于与析出气体分析和FTIR光谱相关的热分析,可以充分了解所获得的草酸盐沉淀物的分解机理。通过X射线衍射,拉曼光谱,HRTEM,SAED,XPS和PL研究了Zn1-x Eu(x)O纳米粒子的结构,形态和光学发光特性。 X射线衍射研究揭示了六方纤锌矿型结构的形成。可以观察到Eu2O3立方结构的存在,最高可达0.5 mol%Eu,这表明二价或三价Eu在ZnO晶格中的溶解度受到限制。较高的Eu浓度下Eu2O3第二相的形成也通过拉曼光谱法和XPS得以维持。对Eu掺杂的ZnO样品的TEM研究表明,聚集的球形和多面体纳米颗粒的大小和范围从20到120 nm,形成具有不同形状和尺寸的聚集体。研究了concentration浓度对结构和形态特征以及发光性能的影响,其中重点研究了chemical的化学态-Eu2 +和Eu3 +。 PL测量结果表明,二价和三价euro离子同时存在于ZnO主晶格中,同时,由于掺杂剂的存在,其缺陷密度也随之增加。

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