中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Rapid synthesis of Mn0.65Zn0.35Fe2O4/SiO2 homogeneous nanocomposites by modified sol-gel auto-combustion method

文献类型:期刊论文

作者Yan SF ; Ling W ; Zhou EL
刊名journal of crystal growth
出版日期2004
卷号273期号:1-2页码:226-233
关键词SILICA MATRIX MAGNETIC-PROPERTIES SIO2 MATRIX FERRITE NANOPARTICLES NANOCRYSTALS
ISSN号0022-0248
通讯作者zhou el
中文摘要mnzn-ferrite/sio2 nanocomposites with different silica content were successfully fabricated by a novel modified sol-gel auto-combustion method using citric acid as a chelating agent and tetraethyl orthosilicate (teos) as the source of silica matrix. the auto-combustion nature of the dried gel was studied by x-ray diffraction (xrd), infrared spectra (ir), thermogravimetry (tg) and differential thermal analysis (dta). transmission electron microscope (tem) observation shows that the mnzn-ferrite particles are homogeneously dispersed in silica matrix after auto-combustion of the dried gels. the magnetic properties vary with the silica content. the transition from the ferromagnetic to paramagnetic state is observed by mossbauer spectra measurement with the increasing silica content. vibrating sample magnetometer (vsm) shows that the magnetic properties of mn0.65zn0.35fe2o4/sio2 nanocomposites strongly depend on the silica content.
收录类别SCI
语种英语
WOS记录号WOS:000226021000030
公开日期2010-08-17
源URL[http://ir.ciac.jl.cn/handle/322003/15119]  
专题长春应用化学研究所_长春应用化学研究所知识产出_期刊论文
推荐引用方式
GB/T 7714
Yan SF,Ling W,Zhou EL. Rapid synthesis of Mn0.65Zn0.35Fe2O4/SiO2 homogeneous nanocomposites by modified sol-gel auto-combustion method[J]. journal of crystal growth,2004,273(1-2):226-233.
APA Yan SF,Ling W,&Zhou EL.(2004).Rapid synthesis of Mn0.65Zn0.35Fe2O4/SiO2 homogeneous nanocomposites by modified sol-gel auto-combustion method.journal of crystal growth,273(1-2),226-233.
MLA Yan SF,et al."Rapid synthesis of Mn0.65Zn0.35Fe2O4/SiO2 homogeneous nanocomposites by modified sol-gel auto-combustion method".journal of crystal growth 273.1-2(2004):226-233.

入库方式: OAI收割

来源:长春应用化学研究所

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