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Dielectric and Magnetic Properties of Nano-Structure BiFeO<SUB>3</SUB>Doped with Different Concentrations of Co Ions Prepared by Sol-Gel Method
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作者 Inas Kamal Batttisha Ibrahim Sayed Ahmed Farag +5 位作者 Mostafa Kamal Mohamed Ali Ahmed Emad Girgis Fawzi El Desouki Hesham Azmi El Meleegi Fawzi El Desouki 《New Journal of Glass and Ceramics》 2015年第3期59-73,共15页
BiFe1-xCoxO3 (x = 0, 0.03, 0.05 and 0.1) symbolic as (BFO, BF3CO, BF5CO and BF10CO) in powder form has been prepared by sol-gel technique using ethylenediamine tetraacetic acid (EDTA) as a chelating agent. X-ray diffr... BiFe1-xCoxO3 (x = 0, 0.03, 0.05 and 0.1) symbolic as (BFO, BF3CO, BF5CO and BF10CO) in powder form has been prepared by sol-gel technique using ethylenediamine tetraacetic acid (EDTA) as a chelating agent. X-ray diffraction (XRD) and FTIR analysis showed rhombohedra distorted BiFeO3 structure with compressive lattice distortion induced by the Co substitution at Fe sites. The transmission electron microscope (TEM) shows irregular particles. The additive of cobalt oxide has led to grains refining giving the following crystallite sizes of 18 nm for BF5Co. The scanning electron microscope (SEM) study reveals that the samples morphology shows relatively uniform grain size distribution. The dielectric properties of BiFeO3 nano-particles in the frequency range of 1 up to 5 MHz at RT revealed that the A.C. conductivity of the prepared samples reaches its maximum value in BF5CO. By decreasing BiFeO3 particle size as a result of doping with different Co ion concentrations, an enhancement in magnetization and a simultaneous suppression in current leakage occurred. The remnant magnetization Mr of BiFe1-xCoxO3 (x = 0, 0.03, 0.05, 0.1) ceramics significantly enhanced, which provides potential applications in information storage. 展开更多
关键词 NANO-STRUCTURE MULTIFERROIC bife1-xcoxo3 (x = 0 0.03 0.05 0.1) XRD FTIR TEM REMNANT Magnetization
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光学浮区法制备BiFe_(1-x)Co_xO_3及其性质研究
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作者 邸大伟 王越 +1 位作者 马云峰 韩文辉 《人工晶体学报》 EI CAS CSCD 北大核心 2013年第11期2265-2269,共5页
采用光学浮区法生长了BiFe1-xCoxO3(x=0、0.01、0.03、0.05、0.07、0.09、0.11)晶体。研究了生长温度、旋转速度、生长速度、有无气体冷却等工艺条件对熔区稳定和样品品质的影响。通过生长参数的优化,获得了尺寸为西(8—12)mm... 采用光学浮区法生长了BiFe1-xCoxO3(x=0、0.01、0.03、0.05、0.07、0.09、0.11)晶体。研究了生长温度、旋转速度、生长速度、有无气体冷却等工艺条件对熔区稳定和样品品质的影响。通过生长参数的优化,获得了尺寸为西(8—12)mm×(60—120)mm的晶体。测试的磁滞回线表明,随着Co掺杂比例的提高,室温下反铁磁性能逐渐增强,当x=0.11时,饱和磁化强度达到了5.5emu/g;介电温谱显示,5%Co掺杂样品的尼尔温度达到320毒的最低值,介电常数因Co替代Fe的比例增加而发生变化。 展开更多
关键词 bife1-xcoxo3 光学浮区法 磁化强度
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BiFe1-xCoxO3粉体的共沉淀-水热法制备与表征
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作者 周营 《佛山陶瓷》 2020年第2期22-25,共4页
以Bi(NO3)3·5H2O、Fe(NO3)3·9H2O、Co(NO3)2·6H2O和KOH为原料,NH3·H2O为沉淀剂,采用共沉淀-水热法制备BiFe1-xCoxO3粉体,借助XRD、SEM和VSM研究掺杂对晶体结构、形貌和磁学性能的影响。结果表明:在180℃和220℃保温... 以Bi(NO3)3·5H2O、Fe(NO3)3·9H2O、Co(NO3)2·6H2O和KOH为原料,NH3·H2O为沉淀剂,采用共沉淀-水热法制备BiFe1-xCoxO3粉体,借助XRD、SEM和VSM研究掺杂对晶体结构、形貌和磁学性能的影响。结果表明:在180℃和220℃保温4 h的条件下成功制备出Co掺杂BiFe1-xCoxO3粉体,Co掺杂量x=0~0.1时,BiFe1-xCoxO3粉体晶粒由100 nm类球形逐渐变成粒径为250 nm的立方体状,BiFe1-xCoxO3粉体较未掺杂的BiFeO3粉体磁性明显增大。 展开更多
关键词 共沉淀-水热法 掺杂 bife1-xcoxo3
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