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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Synthesis and characterization of Indium doped Lead chalcogenides(PbSe)(100-x)In-x thin films composed of QDs
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Synthesis and characterization of Indium doped Lead chalcogenides(PbSe)(100-x)In-x thin films composed of QDs

机译:由QDS组成的掺杂掺杂铅硫芥子生成(PBSE)(100-X)X薄膜的合成与表征

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As-prepared samples of (PbSe)(100-x)In-x(x = 0, 5, 10 and 20) have been synthesized by melt-quenching method and their thin films have been deposited onto glass substrates(at 150 K) by thermal evaporation method. The structural studies of as-deposited thin films have been carried by using HRTEM, HRSEM and XRD analysis. These studies suggest that as-deposited thin films composed of aggregated cubic QDs and polycrystalline structure of the samples. The estimated size of the particles as suggested by the SEM images is found nearly consistent with that of most probable size (6-8 nm for 40% of QDs) as suggested by the TEM-histogram analysis. Due to induced-strain in the lattice, the particles' size is found reducing with increase in In content, this trend is verified by HRSEM images and full width half maxima values of XRD peaks. The QDs of the samples have been excited at wavelength of 300 nm and PL-emission peak has been observed at 370 nm. Blue shift and peak broadening effects are observed with increase in In content. These are the indications of quantum size effect and wide size distribution of the particles with increase in dopent concentration. Optical absorptions(200-900 nm) at room temperature, suggest a direct bandgap that increases with increase in doping content. This is the indication of the presence of defect states and high density of localized states. Width of the urbach tails in the localized states shows a narrowing trend with increase in doping content. This may be due to decrease in band tails which results in widening of optical band gap. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过熔融淬火方法合成(PBSE)(100-X)In-X(X = 0,5,10和20)的制备样品,并且它们的薄膜已沉积在玻璃基板上(以150 k)沉积通过热蒸发方法。使用HRTEM,HRSEM和XRD分析进行了沉积的薄膜的结构研究。这些研究表明,由聚集的立方QD和样品的多晶结构组成的沉积薄膜。如TEM直方图分析所示,SEM图像所提出的估计粒子的估计尺寸与大多数大小(QDS的40%的40%的QDS的6-8nm)的估计尺寸几乎一致。由于晶格中的诱导菌株,发现颗粒的尺寸随内容物的增加而降低,通过HRSEM图像和XRD峰的全宽半最大值验证了这种趋势。样品的QDS在300nm波长的波长下被激发,并且在370nm处观察到PL-发射峰。随着内容的增加,观察到蓝色偏移和峰值扩展效果。这些是量子尺寸效应的指示和颗粒的宽尺寸分布随着掺杂剂的增加而增加。室温下的光吸收(200-900nm),表明直接带隙随着掺杂含量的增加而增加。这是指示存在缺陷状态和局部态的高密度。局部状态中的Urbach尾部的宽度显示较差的趋势随着掺杂含量的增加。这可能是由于带尾的减小,导致光带隙的扩大。 (c)2017年Elsevier B.V.保留所有权利。

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