采用固相反应法制备了Mg_(1-x)Cu_xFe_2O_4(x=0,0.4,0.6和0.8)系多晶铁氧体,分别采用X射线衍射(XRD)、扫描电镜(SEM)和振动样品磁强计(VSM)对样品的结构和静态磁性能进行了表征,并测试了磁环在10k Hz^1MHz范围的磁导率、品质因数以及功...采用固相反应法制备了Mg_(1-x)Cu_xFe_2O_4(x=0,0.4,0.6和0.8)系多晶铁氧体,分别采用X射线衍射(XRD)、扫描电镜(SEM)和振动样品磁强计(VSM)对样品的结构和静态磁性能进行了表征,并测试了磁环在10k Hz^1MHz范围的磁导率、品质因数以及功率损耗。结果表明,Cu含量x=0~0.6时,样品均为单相立方尖晶石结构,Cu含量进一步增加至x=0.8时呈现大量的四方相另相;晶粒尺寸和密度均随x值增加逐渐增大,而电阻率则呈减小趋势;饱和磁化强度由20.7 A m2/kg逐渐增大到30.4 A m2/kg,矫顽力先减小后增大,在x=0.6时具有最小值445.7 A/m。利用适量的Cu2+取代Mg2+可以提高Mg1-xCuxFe2O4铁氧体的磁导率并降低其品质因数,样品的功耗相应地明显增大;在交变磁场频率为370k Hz时,磁通密度低于20 m T范围内,Mg_(0.4)Cu_(0.6)Fe_2O_4具有相对较高的功耗。展开更多
Nanometer micro-porous Nix Zn (1-x )Fe2O4power was synthesized by hydrotherm al method.This is first time to apply template to the synthesis.The structure,characteristics and cry stal appearance are studied further by...Nanometer micro-porous Nix Zn (1-x )Fe2O4power was synthesized by hydrotherm al method.This is first time to apply template to the synthesis.The structure,characteristics and cry stal appearance are studied further by XRD,DSC,TEM,etc.It is found that nanome ter micro-porous crystal is well-crystallized,well-degree of dispers ion and smaller than 100nm in diameter.More over,tri-ethylamine can be used to b e a ideal template in this synthesis,and the first time it is reported in our co untry.The synthesis mechanism is also preliminary discussed in this pap er.展开更多
文摘采用固相反应法制备了Mg_(1-x)Cu_xFe_2O_4(x=0,0.4,0.6和0.8)系多晶铁氧体,分别采用X射线衍射(XRD)、扫描电镜(SEM)和振动样品磁强计(VSM)对样品的结构和静态磁性能进行了表征,并测试了磁环在10k Hz^1MHz范围的磁导率、品质因数以及功率损耗。结果表明,Cu含量x=0~0.6时,样品均为单相立方尖晶石结构,Cu含量进一步增加至x=0.8时呈现大量的四方相另相;晶粒尺寸和密度均随x值增加逐渐增大,而电阻率则呈减小趋势;饱和磁化强度由20.7 A m2/kg逐渐增大到30.4 A m2/kg,矫顽力先减小后增大,在x=0.6时具有最小值445.7 A/m。利用适量的Cu2+取代Mg2+可以提高Mg1-xCuxFe2O4铁氧体的磁导率并降低其品质因数,样品的功耗相应地明显增大;在交变磁场频率为370k Hz时,磁通密度低于20 m T范围内,Mg_(0.4)Cu_(0.6)Fe_2O_4具有相对较高的功耗。
文摘Nanometer micro-porous Nix Zn (1-x )Fe2O4power was synthesized by hydrotherm al method.This is first time to apply template to the synthesis.The structure,characteristics and cry stal appearance are studied further by XRD,DSC,TEM,etc.It is found that nanome ter micro-porous crystal is well-crystallized,well-degree of dispers ion and smaller than 100nm in diameter.More over,tri-ethylamine can be used to b e a ideal template in this synthesis,and the first time it is reported in our co untry.The synthesis mechanism is also preliminary discussed in this pap er.