Structural, dielectric, semiconducting and optical properties of high-energy ball milled YFeO3 nano-particles

C. Singh, D. Kumar, N. Verma, A. Singh
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引用次数: 5

Abstract

In this work, we report the effects of calcination temperature on structural, dielectric, semiconducting and optical properties of YFeO3 nanoparticles prepared by a high energy ball milling process. The structural analysis of the X-ray diffraction data shows that YFeO3 exists in orthorhombic as well as in hexagonal mixed-phase states. The Rietveld analysis confirms that orthorhombic YFeO3 crystallizes into Pnma space group. The optical band gap of YFeO3 reduces from 1.96 eV to 1.68 eV with increasing the calcination temperature of the YFeO3 sample. The bandgap reducing effect might be attributed to the increased crystallite size and decreased lattice strain which is confirmed by the Williamson-Hall plot method. The obtained low bandgap YFeO3 ceramic may provide a new possibility to develop eco-friendly Ferroelectric photovoltaic devices.
高能球磨YFeO3纳米粒子的结构、介电、半导体和光学性质
在这项工作中,我们报告了煅烧温度对高能球磨法制备的YFeO3纳米粒子的结构、介电、半导体和光学性质的影响。x射线衍射数据的结构分析表明,YFeO3以正交和六方混合相态存在。Rietveld分析证实正交YFeO3结晶成Pnma空间群。随着YFeO3样品煅烧温度的升高,YFeO3的光学带隙从1.96 eV减小到1.68 eV。带隙减小效应可能是由于晶体尺寸增大和晶格应变减小所致,这一点得到了Williamson-Hall图方法的证实。所获得的低带隙YFeO3陶瓷为开发环保铁电光伏器件提供了新的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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