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Synthesis and Characterization of Single Crystals Y_3Fe_5O_(12) and Bi_3Fe_50_(12) Prepared via Sol Gel Technique

机译:通过溶胶凝胶技术制备单晶Y_3FE_5O_(12)和Bi_3Fe_50_(12)的合成和表征

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Magnetic properties of nano-crystalline yttrium iron garnet, Y_3Fe_5O_(12) and bismuth iron garnet, Bi_3Fe_50_(12) were studied. The samples were synthesized by using sol gel route. The gel were prepared using nitrates of yttrium and iron for the yttium iron garnet (YIG) and nitrates of bismuth and iron for the bismuth iron garnet (BIG). The raw materials were mixed and dissolved in citric acid and were stirred for 3 months in room temperature until the gel was observed. The X-ray diffraction pattern reveals the cubic structure of YIG and BIG samples at 700°C and 500°C respectively. From the M-H diagrams it was found that the YIG and BIG samples have saturation magnetization, Ms of 27.2 Gs with rectangular hysteresis loop and 24.4 Gs with S hysteresis loop, respectively. It is evident from the FESEM micrographs that the rectangular loop shape (YIG) arises from the homogeneous and rounded microstructure as compared to the inhomogenous and random orientation microstructure (BIG) of the samples. From the Electron diffraction done on Transmission Electron Microscope, both of the samples were shown to be single crystals.
机译:纳米结晶钇铁石榴石的磁性,研究了Y_3FE_5O_(12)和铋铁石榴石,BI_3FE_50_(12)进行了研究。通过使用溶胶凝胶途径合成样品。使用硝酸盐和铁用于钇铁石榴石(YIG)和铁的硝酸铁和铁的硝酸铁来制备凝胶,为铋铁石榴石(大)。将原料混合并溶解在柠檬酸中,并在室温下搅拌3个月,直至观察到凝胶。 X射线衍射图案分别显示出700℃和500℃下的YIG和大样品的立方结构。从M-H图中发现,YIG和大样本具有饱和磁化强度,MS为27.2gs,具有矩形滞后回路和24.4gs的滞后环。与圆形环形(YIG)相比,与样品的非圆周源和随机取向微结构(大)相比,矩形环形形状(YIG)从均匀和圆形的微观结构产生的。从在透射电子显微镜上完成的电子衍射,两个样品被示出为单晶。

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