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Magnetoelectric composite ceramics of nickel ferrite and lead zirconate titanate via in situ processing
Dandan Wu ; Weihua Gong ; Haijin Deng ; Ming Li
2010-10-12 ; 2010-10-12
关键词Experimental/ ceramics composite materials lead compounds magnetic particles magnetoelectric effects nickel compounds scanning electron microscopy sintering sol-gel processing X-ray diffraction/ magnetoelectric composite ceramics nickel ferrite lead zirconate titanate PZT sol-gel method sintering X-ray diffraction patterns scanning electron microscopy magnetic grains resonance frequency NiFe/sub 2/O/sub 4/-PZT/ A7580 Magnetomechanical and magnetoelectric effects, magnetostriction A8120L Preparation of ceramics and refractories A8120E Powder techniques, compaction and sintering A7560J Fine-particle magnetic systems/ NiFe2O4PbZrO3TiO3/ss Fe2O4/ss TiO3/ss ZrO3/ss Fe2/ss O4/ss O3/ss Fe/ss Ni/ss Pb/ss Ti/ss Zr/ss O/ss
中文摘要Magnetoelectric (ME) composite ceramics of NiFe/sub 2/O/sub 4/ (NFO) and lead zirconate titanate (PZT) were synthesized by a simple in situ processing based on a sol-gel method followed by a conventional sintering. X-ray diffraction patterns and scanning electron microscopy images revealed that this processing can produce two pure phases simultaneously. The in situ grown magnetic NiFe/sub 2/O/sub 4/ grains were well dispersed in the PZT matrix. The results demonstrated an attractive ME response of about 28.5 V cm/sup -1/ Oe/sup -1/ in the 0.35 NiFe/sub 2/O/sub 4//0.65PZT at a resonance frequency of around 287 kHz.
语种英语
出版者IOP Publishing Ltd. ; UK
内容类型期刊论文
源URL[http://hdl.handle.net/123456789/78243]  
专题清华大学
推荐引用方式
GB/T 7714
Dandan Wu,Weihua Gong,Haijin Deng,et al. Magnetoelectric composite ceramics of nickel ferrite and lead zirconate titanate via in situ processing[J],2010, 2010.
APA Dandan Wu,Weihua Gong,Haijin Deng,&Ming Li.(2010).Magnetoelectric composite ceramics of nickel ferrite and lead zirconate titanate via in situ processing..
MLA Dandan Wu,et al."Magnetoelectric composite ceramics of nickel ferrite and lead zirconate titanate via in situ processing".(2010).
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