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首页> 外文期刊>Journal of nano research >Structural Properties Dependence on Annealing Temperature of 1-D Lanthanum Iron Garnet Nanofiber Prepared via Electrospinning Technique
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Structural Properties Dependence on Annealing Temperature of 1-D Lanthanum Iron Garnet Nanofiber Prepared via Electrospinning Technique

机译:通过静电纺丝技术制备的1-D镧铁石榴石纳米纤维退火温度的结构性能

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摘要

The effect of anealing temperature on structural properties of Lanthanum Iron Garnet (LIG) nanofiber has been studied. The LIG nanofiber were prepared by electrospinning technique. This technique has been extensively developed as a simple and efficient method for drawing nanofibers from polymer solutions. The viscous LIG solution were loaded in syringe and were pumped at 0.05 mL/h. The nanofibers were collected on aluminium foil and were treated at 700 degrees C, 750 degrees C and 1000 degrees C in order to study the effect of annealing temperature to the nanofibers structure. X-Ray Diffraction (XRD) and Field Emission Scanning Electron Microscope (FESEM) were employed to study the phase formation and morphology of the samples. The XRD results of LIG nanofiber reveals that as the annealing temperature increases from 700 degrees C to 1000 degrees C, the corresponding peaks become sharper and narrower, which demonstrate the improvement of crystallinity and crystallite size. The FESEM images of LIG nanofiber demonstrates that the nanofibers treated at 700 degrees C have continuous structure with a relatively rough surface and their diameter range is within 41.3 nm and 58.7 nm. Subsequently, when the calcination temperature increase further, the morphology of the sample is dramatically changed. As calcinations temperature rises to 750 degrees C, the surface of resultant nanofibers start to become agglomerate due to the growth and coalescence of the particle in the nanofibers under the calcination process and the nanofibers structure change back to continuous structure with bigger diameter at 1000 degrees C as compared to calcination temperature of 700 degrees C.
机译:研究了对镧铁石榴石(Lig)纳米纤维结构性质的疗效。通过静电纺丝技术制备Lig纳米纤维。该技术已被广泛地开发为从聚合物溶液中绘制纳米纤维的简单有效的方法。粘性LIG溶液在注射器中加载,并以0.05mL / h泵送。将纳米纤维收集在铝箔上,并在700℃,750℃和1000摄氏度下进行处理,以研究退火温度与纳米纤维结构的影响。采用X射线衍射(XRD)和场发射扫描电子显微镜(FESEM)研究样品的相形成和形态。 Lig NanoFiber的XRD结果显示,随着退火温度从700℃升高到1000℃,相应的峰变得更清晰和更窄,表明结晶度和微晶尺寸的改善。 Lig纳米纤维的FeSEM图像表明,在700℃处理的纳米纤维具有连续结构,具有相对粗糙的表面,其直径范围在41.3nm和58.7nm内。随后,当煅烧温度进一步增加时,样品的形态显着改变。随着煅烧温度升高到750℃,所得纳米纤维的表面由于煅烧过程下纳米纤维中的颗粒的生长和聚结而开始聚集,并且纳米纤维结构在1000摄氏度下较大直径的连续结构变为连续结构与700摄氏度的煅烧温度相比。

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