Synthesis of Nano-BiFeO3 by Low-heating Temperature Solid State Precursor Method: Using Different Types of Alkali
Li, Jin; Wang, Lei; Xu, Jin-Bao; Bian, Liang; Chang, Ai-Min; Zhao, Peng-Jun; Zhang, Jia-Qi; Xiong, Xin-Qian; Xu, Fang-Long
2014
发表期刊Integrated Ferroelectrics
ISSN10584587
卷号156期号:1页码:129-136
摘要A new way to prepare BiFeO3 nano-powders by low-heating temperature solid state precursor method is presented in this paper. Roomerature solid state reaction was adopted to prepare the precursors, which were further calcined in low-heating temperature at 500°C to synthesize nano-BiFeO 3. The particle size of BiFeO3, ranging from 18 to 80 nanometers, can be effectively controlled by different alkali in raw materials. Owing to the quantum size effect, the optical band gaps and magnetic characteristics of BiFeO3 increased with the decreasing particle size. © 2014 Taylor & Francis Group, LLC.
关键词Bifeo3 Nanostructures Magnetic Properties Optical Properties
DOI10.1080/10584587.2014.906888
收录类别SCI
WOS记录号WOS:000337951900018
引用统计
被引频次:1[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://ir.xjipc.cas.cn/handle/365002/3819
专题中国科学院特殊环境功能材料与器件重点试验室
作者单位Key Laboratory of Functional Materials and Devices for Special Environments of CAS, Xinjiang Key Laboratory of Electronic Information Materials and Devices, Xinjiang Technical Institute of Physics and Chemistry of CAS, 40-1 South Beijing Road, Urumqi 830011, China
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Li, Jin,Wang, Lei,Xu, Jin-Bao,et al. Synthesis of Nano-BiFeO3 by Low-heating Temperature Solid State Precursor Method: Using Different Types of Alkali[J]. Integrated Ferroelectrics,2014,156(1):129-136.
APA Li, Jin.,Wang, Lei.,Xu, Jin-Bao.,Bian, Liang.,Chang, Ai-Min.,...&Xu, Fang-Long.(2014).Synthesis of Nano-BiFeO3 by Low-heating Temperature Solid State Precursor Method: Using Different Types of Alkali.Integrated Ferroelectrics,156(1),129-136.
MLA Li, Jin,et al."Synthesis of Nano-BiFeO3 by Low-heating Temperature Solid State Precursor Method: Using Different Types of Alkali".Integrated Ferroelectrics 156.1(2014):129-136.
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