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首页> 外文期刊>Applied Physics >Co-doped ZnSe: Mn, Cu quantum dots (QDs): Eco-friendly synthesis,optical and structural properties besides lattice strain/dislocation density
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Co-doped ZnSe: Mn, Cu quantum dots (QDs): Eco-friendly synthesis,optical and structural properties besides lattice strain/dislocation density

机译:共掺杂ZnSE:Mn,Cu量子点(QDS):异质合成,除了晶格菌株/位错密度之外的光学和结构性能

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摘要

Cu-Mn co-doped ZnSe quantum dots were eco-friendly synthesized at different synthesis conditions using water-based microwave-activated (MWIR) method. Energy band gaps E_(gap)~(DASF) were determined using high-precision derivation of absorp-tion spectrum fitting (DASF) method; the obtained results show that E_(gap)~(DASF) values are within the range of 3.49-3.77 eV. Depending on the synthesis conditions, a decreasing trend of energy gap was observed with the increasing of MWIR time and ambient temperature. Morphologies and structural characterizations were done by XRD, EDX, FESEM, map and TEM, which revealed formation of ZnSe nanoparticles with mean crystallite size of~2-5 nm. Also, Urbach energies were estimated, which their very small values in compare with E_(gap) imply to the sharp band edges and so their good crystallinity nature. Moreover, refractive index, dielectric constant and nonlinear optical susceptibility of each sample were determined; results imply that these nanoparticles have a high potential in optoelectronic applications. Also, structural characteristics such as dislocation density, lattice strain and size of NCs were evaluated upon the Scherrer, Williamson-Hall and Williamson-Small-man methods. The results of structural features obtained from these approaches are highly inter-correlated and show same trends with the variation of synthesis conditions. Results show that the size of QDs is varied tunable by changing the MWIR time, ambient temperature and Mn dopant percentage and the as-synthesized ZnSe QDs and doped QDs have similar cubic zinc blend structure. Also, TEM result reveals that ZnSe nanoparticles are spherical in shape with an average grain size of about 5 nm. Upon the diiferent performed opto-structural criteria, sample with Mn = 4% has the best crystallinity as good candidate in optical and mechanical applications. There were anomalies in different properties at Mn=1.5 and 2% attributed to their higher density of lattice imperfections and surface trap centers related to how Mn ions incorporated to the ZnSe host lattice.
机译:Cu-Mn共掺杂ZnSe量子点在不同的合成条件下使用基于水的微波活化(MWIR)方法在不同的合成条件下合成。能带间隙E_(GAP)〜(DASF)使用高精度衍生吸收光谱配件(DASF)方法测定;所获得的结果表明,E_(GAP)〜(DASF)值在3.49-3.77eV的范围内。根据合成条件,随着MWIR时间和环境温度的增加,观察到能量间隙的降低趋势。通过XRD,EDX,FESEM,MAP和TEM完成形态和结构表征,其揭示了ZnSe纳米颗粒的形成,具有平均微晶尺寸为约2-5nm。此外,估计URBACH能量,它们非常小的值与E_(间隙)暗示到尖锐带边缘,因此它们的良好结晶性质。此外,确定每个样品的折射率,介电常数和非线性光学敏感性;结果意味着这些纳米颗粒具有高电位在光电应用中。此外,在Scherrer,Williamons-Hall和Williamson-Small-Man方法上评估了脱位密度,晶格菌株和NCs大小的结构特征。从这些方法获得的结构特征的结果是高度相关的并且具有相同的趋势,合成条件的变化。结果表明,QDS的尺寸通过改变MWIR时间,环境温度和Mn掺杂剂百分比和合成的ZnSe QD和掺杂QD具有类似的立方锌混合结构而变化。此外,TEM结果表明,ZnSe纳米颗粒的形状为球形,平均晶粒尺寸为约5nm。在Diferent进行了光学结构标准时,具有Mn = 4%的样品具有最佳的结晶度,作为光学和机械应用中的良好候选物。 Mn = 1.5和2%的不同性质存在异常,其归因于与掺入ZnSe宿主晶格的Mn离子有关的晶格缺陷和表面捕集中心的较高密度。

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