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首页> 外文期刊>Journal of magnetism and magnetic materials >Enhanced microwave absorption and magnetic phase transitions of nanoparticles of multiferroic LaFeO_3 incorporated in multiwalled carbon nanotubes (MWCNTs)
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Enhanced microwave absorption and magnetic phase transitions of nanoparticles of multiferroic LaFeO_3 incorporated in multiwalled carbon nanotubes (MWCNTs)

机译:掺入多壁碳纳米管(MWCNT)中的多铁性LaFeO_3纳米粒子的增强的微波吸收和磁性相变

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Multiferroic nanoparticles of LaFeO_3 (LFO) are prepared by a combination of sono-chemical and sol-gel auto combustion method. The as prepared sample is calcined at 500 °C for 5 h to get the desired crystallographic phase. To enhance the microwave absorption, nanoparticles of LFO are incorporated in the matrix of multi-walled carbon nanotubes (MWCNTs). Crystallographic phases of LFO and LFO-MWCNTs are confirmed by analyzing the X-ray diffractograms (XRD) using Rietveld method. The average size of nanoparticles, crystallographic phase, morphology, and incorporation of LFO nanoparticles in MWCNTs are also obtained by high-resolution transmission electron microscope (HRTEM). Micrographs, nanocrystalline fringe pattern and selected area electron diffraction pattern recorded during HRTEM observations confirmed the formation of the desired nanocomposite phase of LFO-MWCNTs. FTIR and Raman spectroscopy of LFO and LFO-MWCNTs are also recorded at room temperature (RT) which confirm the presence of the individual component in the nanocomposite sample. Hysteresis loops at different temperatures from 300 K down to 5 K, zero field cooled (ZFC) and field cooled (FC) magnetizations (M) as a function of temperature (T) of LFO-MWCNTs are recorded in SQUID magnetometer. Analysis of the observed magnetic data of LFO-MWCNTs suggests the presence of superparamagnetism above ∼298 K and a spin-glass like behavior is found below ∼50 K. The electromagnetic wave absorbing properties in X and K_u bands of microwave regions (8-12 GHz and 12-18 GHz) measured by a vector network analyzer (VNA) confirm the significant enhancement of microwave absorption (R_L ∼ −34.88 dB at 10.53 GHz for 1 mm thickness) of LFO in LFO-MWCNTs, which is quite interesting for such multiferroic system.
机译:LaFeO_3(LFO)的多铁性纳米粒子是通过声化学和溶胶-凝胶自燃法相结合制备的。所制备的样品在500°C下煅烧5h以得到所需的结晶相。为了增强微波吸收,将LFO的纳米颗粒掺入多壁碳纳米管(MWCNT)的基质中。通过使用Rietveld方法分析X射线衍射图(XRD),可以确定LFO和LFO-MWCNT的结晶相。还可以通过高分辨率透射电子显微镜(HRTEM)获得纳米粒子的平均大小,结晶相,形态以及LFO纳米粒子在MWCNT中的掺入。在HRTEM观察过程中记录的显微照片,纳米晶体条纹图案和选定区域的电子衍射图案证实了LFO-MWCNTs所需纳米复合相的形成。 LFO和LFO-MWCNT的FTIR和拉曼光谱也在室温(RT)下记录,这证实了纳米复合材料样品中单个成分的存在。在SQUID磁力计中记录了从300K到5K的不同温度下的磁滞回线,零磁场冷却(ZFC)和磁场冷却(FC)磁化强度(M)与LFO-MWCNT的温度(T)的关系。对观察到的LFO-MWCNTs的磁数据的分析表明,在298 K以上存在超顺磁性,在50 K以下存在自旋玻璃状行为。微波区域X和K_u波段的电磁波吸收特性(8-12矢量网络分析仪(VNA)测量的GHz和12-18 GHz频率证实了LFO-MWCNT中LFO的微波吸收(在10.53 GHz处R_L〜-34.88 dB,厚度为1 mm)显着增强,这对于LFO-MWCNT非常有意义多铁性系统。

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