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国家教育部博士点基金(20103227110006)

作品数:8 被引量:13H指数:2
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Bovine Serum Albumin Protein Adsorption on Nanocrystalline Porous Magnetic α-Fe Microfibers
The nanocrystalline,porous,magnetic α-Fe microfibers with diameter of 1-2μm and grain size of about 45 nm were...
Qingrong LIANG1,Ruijiang LIU2,Xiangqian SHEN1,Jiangying SHEN2 1 School of Material Science and Engineering,Jiangsu University,Zhenjiang,China,212013 2 School of Pharmacy,Jiangsu University,Zhenjiang,China,212013
关键词:Α-FE
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Fabrication and Magnetic Properties of Composite Ni_(0.5)Zn_(0.5)Fe_2O_4/Pb(Zr_(0.52)Ti_(0.48))O_3 Nanofibers by Electrospinning被引量:1
2011年
One-dimensional and quasi-one-dimensional nanostructure materials are promising building blocks for electromagnetic devices and nanosystems.In this work,the composite Ni0.5Zn0.5Fe2O4(NZFO)/ Pb(Zr0.52Ti0.48)O3(PZT) nanofibers with average diameters about 65 nm are prepared by electrospinning from poly(vinyl pyrrolidone) (PVP) and metal salts.The precursor composite NZFO/PZT/PVP nanofibers and the subsequent calcined NZFO/PZT nanofibers are investigated by Fourier transform infrared spectroscopy (FT- IR) ,X-ray diffraction (XRD),scanning electron microscopy (SEM).The magnetic properties for nanofibers are measured by vibrating sample magnetometer(VSM).The NZFO/PZT nanofibers obtained at calcination temperature of 900 °C for 2 h consist of the ferromagnetic spinel NZFO and ferroelectric perovskite PZT phases,which are constructed from about 37 nm NZFO and 17 nm PZT grains.The saturation magnetization of these NZFO/PZT nanofibers increases with increasing calcination temperature and contents of NZFO in the composite.
沈湘黔
Double-layer microwave absorber of nanocrystalline strontium ferrite and iron microfibers被引量:1
2012年
Microwave absorption properties of the nanocrystalline strontium ferrite (SrFe12O19) and iron (α-Fe) microfibers for single-layer and double-layer structures are investigated in a frequency range of 2 GHz 18 GHz. For the singlelayer absorbers, the nanocrystalline SrFe12O19 microfibers show some microwave absorptions at 6 GHz 18 GHz, with a minimum reflection loss (RL) value of -11.9 dB at 14.1 GHz for a specimen thickness of 3.0 mm, while for the nanocrystalline α-Fe microfibers, their absorptions largely take place at 15 GHz-18 GHz with the RL value exceeding -10 dB, with a minimum .RL value of about -24 dB at 17.5 GHz for a specimen thickness of 0.7 mm. For the doublelayer absorber with an absorbing layer of α-Fe microfibers with a thickness of 0.7 mm and matching layer of SrFe12O19 microfibers with a thickness of 1.3 ram, the minimum RL value is about -63 dB at 16.4 GHz and the absorption band width is about 6.7 GHz ranging from 11.3 GHz to 18 GHz with the RL value exceeding -10 dB which covers the whole Ku-band (12.4 GHz 18 GHz) and 27% of X-band (8.2 GHz 12.4 GHz).
韦春余沈湘黔宋福展
Li_(0.5-0.5x)Zn_xFe_(2.5-0.5x)O_4纳米纤维的电纺制备及其结构和磁性能被引量:3
2011年
以聚乙烯吡咯烷酮、硝酸锂、硝酸锌和硝酸铁为主要原料,通过静电纺丝技术结合后期的热处理制备了直径在50~100 nm的单相Li0.5-0.5xZnxFe2.5-0.5xO4(x=0.0,0.2,0.3,0.4,0.5,0.8)纳米纤维.利用热重-差热分析、X射线衍射、场发射扫描电子显微镜、透射电子显微镜和振动样品磁强计研究了前驱体纤维的热分解过程以及焙烧温度和化学成分对所得纳米纤维样品的晶体结构、微观形貌和磁性能的影响.结果表明:前驱体纤维经350℃焙烧后,纯相晶态的LiZn铁氧体纳米纤维基本形成.当焙烧温度由350℃升高到600℃,Li0.35Zn0.3 Fe2.35O4纳米纤维的平均晶粒尺寸由13.0 nm增大到47.5 nm,微观形貌逐渐向链状结构演化,比饱和磁化强度由39.7 A·m2·kg-1单调递增到84.5 A·m2·kg-1,而矫顽力先增大后减小,在550℃时达到最大值12.6 kA·m-1,其单畴临界尺寸约为35 nm.随着Zn含量x的增加,所制备的LiZn铁氧体纳米纤维的晶格常数近似呈线性增长,符合Vegard定律,矫顽力从x=0.0时的17.1 kA·m-1逐步减小到x=0.8时的2.4 kA·m-1,比饱和磁化强度Ms先增大后减小,在x=0.3时达到一个最大值74.7 A·m2·kg-1.与相似条件下制备的LiZn铁氧体纳米粒子相比,LiZn铁氧体纳米纤维由于其形状各向异性,而表现出相对较高的矫顽力.
向军褚艳秋周广振郭银涛郭纪源沈湘黔
关键词:LIZN铁氧体纳米纤维磁性能形状各向异性
Fabrication and Magnetic Property of One-dimensional SrTiO_3/SrFe_(12)O_(19) Composite Nanofibers by Electrospinning
2011年
The composite nanofibers of SrTiO3/SrFel2O19 with a molar ratio of 1:1 and diameter about 120 nm were prepared by electrospinning. Effects of calcination temperature on the formation, crystallite size, morphology and magnetic property were studied by infrared spectroscopy, X-ray diffraction, scanning electron microscopy and vibrating sample magnetometer. The binary phase of strontium ferrite and titanate was formed after being calcined at 900℃ for 2 h and the composite nanofibers were fabricated from nanograins of SrTiO3 about 24 nm and SrFel2O19 around 33 nm. The crystallite sizes for the nanofibers increase with increasing calcination temperature and the addition of SrTiO3 has an obvious suppression effect on SrFel2O19 grain growth. The specific saturation magnetization and remanence tend to increase with the crystallite size. With increasing calcination temperature from 900 to 1050℃, the coercivity increases initially, achieving a maximum value of 520.2 kA.m^-1 at 950℃, and then shows a reduction tendency.
Qingrong Liang Xiangqian Shen Fuzhan Song Mingquan Liu
关键词:ELECTROSPINNING
添加Al_2O_3对Ni_(0.5)Zn_(0.5)Fe_2O_4纳米纤维结构和磁性能的影响
2011年
采用静电纺丝技术制备了添加0~20wt%Al2O3的Ni0.5Zn0.5Fe2O4纳米纤维。通过XRD、FESEM、TEM和VSM对样品的物相结构、形貌和磁性能进行了表征。结果表明,所合成的复合纳米纤维的直径都分布在40~150 nm之间,添加到纤维中的Al2O3主要以非晶态形式分布于铁氧体晶粒边界;随着Al2O3添加量的增加,可观察到γ-Fe2O3相逐渐析出,Ni-Zn铁氧体的晶格常数单调减小,说明有一些Al2O3进入到尖晶石晶格中取代了B位的Fe3+离子,Ni-Zn铁氧体的平均晶粒尺寸先增大后减小,在Al2O3添加量为8wt%时达到最大值39.2 nm;比饱和磁化强度和矫顽力随Al2O3添加量的增加呈现出相同的变化规律,先减小后增大,当Al2O3添加量超过5wt%时又开始变小。
向军周广振褚艳秋郭银涛沈湘黔
关键词:NI-ZN铁氧体AL2O3纳米纤维静电纺丝
电纺制备多孔Ni_(1-x)Zn_xFe_2O_4超细纤维的结构与磁性能被引量:7
2012年
采用静电纺丝技术结合后期的热处理制备了具有多孔结构的Ni1-xZnxFe2O4(x=0-0.8)超细纤维.利用X射线衍射(XRD)、傅里叶变换红外光谱(FTIR)、场发射扫描电镜(FESEM)、低温N2吸附-脱附和振动样品磁强计(VSM)对纤维样品的晶体结构、微观形貌、孔特征和室温磁性能进行了研究.结果表明,550℃焙烧2 h得到的多孔Ni1-xZnxFe2O4超细纤维均为单相尖晶石结构,平均粒径约为25-30 nm,纤维直径主要分布在200-500 nm之间,且具有较大的长径比;所制备的Ni0.5Zn0.5Fe2O4多孔纤维的孔结构主要以狭缝状介孔为主,其平均孔径约为11 nm;随着Zn含量x由0增加0.8,Ni1-xZnxFe2O4纤维的晶格常数a线性增大,A位的红外特征振动频率单调递减,矫顽力由13.8 kA/m逐步减小到2.3 kA/m,比饱和磁化强度先增大后减小,在x=0.4时达到最大值66.8 A.m2/kg.与相近尺寸的Ni-Zn铁氧体纳米粒子相比,Ni-Zn铁氧体超细纤维由于其形状各向异性而表现出更高的矫顽力.
向军褚艳秋周广振郭银涛沈湘黔
关键词:NI-ZN铁氧体多孔纤维磁性能
α-Fe/BaFe_(12)O_(19)复合粉体的有机凝胶–热还原法制备及磁性能
2012年
以柠檬酸和金属盐为原料,采用有机凝胶–热还原法制备了α-Fe/BaFe12O19软硬磁复合粉体。通过X射线衍射、扫描电子显微镜和振动样品磁强计对还原产物的物相、形貌及磁性能进行了表征。结果表明:复合粉体的磁性能与两相的组成及还原工艺有关。随着还原温度升高和时间延长,复合粉体的饱和磁化强度逐渐升高,矫顽力却先下降后上升。在氢气–氮气中经375℃还原1h后,制备的α-Fe/BaFe12O19复合粉体的比饱和磁化强度为58.04A.m2/kg,矫顽力为32.54 kA/m,比剩余磁化强度为24.6 Am2/kg。
杨新春沈湘黔宋福展刘瑞江崔学文
关键词:复合粉体钡铁氧体磁性能
Enhancement of microwave absorption of nanocomposite BaFe_(12)O_(19)/α-Fe microfibers被引量:2
2013年
Nanocomposite BaFe12019/a-Fe microfibers with diameters of about 1-5 μm are prepared by the organic gel- thermal selective reduction process. The binary phase of BaFe12019 and a-Fe is formed after reduction of the precursor BaFel2019/a-Fe203 microfibers at 350 ℃ for 1 h. These nanocomposite microfibers are fabricated from a-Fe (16-22 nm in diameter) and BaFe12019 particles (36--42 nm in diameter) and basically exhibit a single-phase-like magnetization be- havior, with a high saturation magnetization and coercive force arising from the exchange--coupling interactions of soft a-Fe and hard BaFe12019. The microwave absorption characteristics in a 2-18 GHz frequency range of the nanocomposite BaFe12O19/a-Fe microfibers are mainly influenced by their mass ratio of a-Fe/BaFe12019 and specimen thickness. It is found that the nanocomposite BaFelzO19/a-Fe microfibers with a mass ratio of 1:6 and specimen thickness of 2.5 mm show an optimal reflection loss (RL) of -29.7 dB at 13.5 GHz and the bandwidth with RL exceeding -10 dB covers the whole Ku-band (12.4-18.0 GHz). This enhancement of microwave absorption can be attributed to the heterostruc- ture of soft, nano, conducting a-Fe particles embedded in hard, nano, semiconducting barium ferrite, which improves the dipolar polarization, interfacial polarization, exchange--coupling interaction, and anisotropic energy in the nanocomposite BaFe12O19/a-Fe microfibers.
杨新春刘瑞江沈湘黔宋福展景茂祥孟献丰
关键词:NANOCOMPOSITESMICROFIBERS
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