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首页> 外文期刊>Physica, B. Condensed Matter >Structure, morphology and optical properties of undoped and MN-doped ZnO(1-x)Sx nano-powders prepared by precipitation method
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Structure, morphology and optical properties of undoped and MN-doped ZnO(1-x)Sx nano-powders prepared by precipitation method

机译:沉淀法制备的非掺杂和MN掺杂的ZnO(1-x)Sx纳米粉的结构,形貌和光学性质

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摘要

The undoped and Mn-doped ZnO(1-x)Sx, nano-powders were successfully synthesized by precipitation method without using any capping agent. Its structure, morphology, elemental analysis, optical and luminescence properties were determined by scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDS), UV-vis spectroscopy (UV) and photoluminescence spectroscopy (PL). A typical SEM image of the un-doped ZnO(1-x)Sx, nanoparticles exhibit flake like structures that changes to nearly spherical particles with Mn-doping. The XRD of undoped and Mn doped ZnO(1-x)Sx, pattern reveals the formation of a product indexed to the hexagonal wurtzite phase of ZnS. The nanopowders have crystallite sizes estimated from XRD measurements were in the range of 10-20 nm. All the samples showed absorption maximum of ZnO(1-x)Sx, at 271 nm and high transmittance in UV and visible region, respectively. The undoped ZnO(1-x)Sx nanoparticles show strong room-temperature photoluminescence with four emission bands centering at 338 nm, 384 nm, 448 nm and 705 nm that may originate to the impurity of ZnO(1-x)Sx, existence of oxide related defects. The calculated bandgap of the nanocrystalline ZnO(1-x)Sx showed a blue-shift with respect to the Mn-doping. The PL spectra of the Mn-doped samples exhibit a strong orange emission at around 594 nm attributed to the T-4(1)-(6)A(1) transition of the Mn2+ ions. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过不使用任何封端剂的沉淀方法成功地合成了未掺杂和Mn掺杂的ZnO(1-x)Sx纳米粉。通过扫描电子显微镜(SEM),能量色散X射线光谱(EDS),紫外可见光谱(UV)和光致发光光谱(PL)确定其结构,形态,元素分析,光学和发光性质。未掺杂的ZnO(1-x)Sx纳米颗粒的典型SEM图像显示出片状结构,随着Mn掺杂变为近乎球形的颗粒。未掺杂和锰掺杂的ZnO(1-x)Sx的XRD图谱表明形成了以ZnS六方纤锌矿相为索引的产物。纳米粉末具有通过XRD测量估计的微晶尺寸,其范围为10-20nm。所有样品均在271 nm处显示最大的ZnO(1-x)Sx吸收,并分别在紫外线和可见光区域具有高透射率。未掺杂的ZnO(1-x)Sx纳米颗粒表现出较强的室温光致发光特性,其四个发射带的中心为338 nm,384 nm,448 nm和705 nm,这可能是由于ZnO(1-x)Sx的杂质引起的。氧化物相关的缺陷。纳米晶体ZnO(1-x)Sx的计算带隙显示出相对于Mn掺杂的蓝移。 Mn掺杂样品的PL光谱在594 nm处显示出强烈的橙色发射,这归因于Mn2 +离子的T-4(1)-(6)A(1)跃迁。 (C)2015 Elsevier B.V.保留所有权利。

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