首页> 外文期刊>Canadian Journal of Physics >Characterization of mechanically synthesized AgInSe_2 nanostructures
【24h】

Characterization of mechanically synthesized AgInSe_2 nanostructures

机译:机械合成的AgInSe_2纳米结构的表征

获取原文
获取原文并翻译 | 示例
           

摘要

A quantum dot (QD) solar cell is an emerging field in solar cell research that uses QDs as the photovoltaic material. QDs have band gaps that are tunable across a wide range of energy levels by changing the QD size. Embedding different sized dots within the absorbing layer encourages harnessing the maximum spectrum energy. Also, other effects like a very high surface to volume ratio and quantum transport make them attractive for future devices. AgInSe_2 (AIS) nanoparticles with tetragonally distorted phase have been prepared by mechanically alloying the synthesized bulk AIS powder at room temperature in a planetary ball mill under Ar in an attempt to create QDs. Nanoparticles are formed of ~10 nm in size. These ball-milled nanoparticles contain different shapes and the Rietveld analysis of X-ray powder diffraction data reveals their detailed structural features. High resolution transmission electron microscope images also detect the presence of the tetragonal phase in ball-milled samples. Peak broadening (full width at half maximum), the main characteristic of a decrease in size, is observed. X-ray diffraction data reveals the downscaling of crystallite from 103 to 7 nm, and the tetragonally distorted structure of the system was not disturbed by milling. Differential scanning calorimetric study also reveals the phase evolution and crystallization kinetics. Bulk samples show endo melting peak at 134 and 220 ℃. The cooling-crystallization complexity of the peaks signifies that crystallization from melt was heterogeneous nucleation and crystallization from multiple types of centers. Unlike this milled samples show two crystallization effects at approximately 135 and 380 ℃. Optical properties investigated to find band edges suggest that it is around 1.3 eV, which is encouraging for photovoltaic applications.
机译:量子点(QD)太阳能电池是太阳能电池研究中的一个新兴领域,它使用QDs作为光伏材料。 QD的带隙可通过改变QD的大小在很宽的能级范围内调节。将不同大小的点嵌入吸收层中有助于利用最大的光谱能量。同样,其他效果,例如非常高的表面体积比和量子传输,也使其对未来的设备有吸引力。通过在室温下在行星式球磨机中在室温下将合成的块状AIS粉末机械合金化,以尝试制备QD,可以制备具有四方扭曲相的AgInSe_2(AIS)纳米粒子。纳米粒子的大小约为10 nm。这些球磨的纳米颗粒具有不同的形状,X射线粉末衍射数据的Rietveld分析揭示了它们的详细结构特征。高分辨率透射电子显微镜图像还可以检测球磨样品中四方相的存在。观察到峰展宽(半峰全宽),这是尺寸减小的主要特征。 X射线衍射数据揭示了微晶的尺寸从103减小到7 nm,并且该系统的四方畸变结构不受研磨的干扰。差示扫描量热研究还揭示了相演化和结晶动力学。散装样品在134和220℃时显示出内融峰。峰的冷却结晶复杂性表明,从熔体中结晶是异质形核,并从多种类型的中心结晶。与这种研磨样品不同,在大约135和380℃时会显示出两种结晶作用。研究发现带边缘的光学性能表明其约为1.3 eV,这对于光伏应用是令人鼓舞的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号