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首页> 外文期刊>Journal of Molecular Structure >Infrared spectral evolution, elastic, optical and thermodynamic properties study on mechanically milled Ni_(0.5)Zn_(0.5)Fe _2O_4 spinel ferrite
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Infrared spectral evolution, elastic, optical and thermodynamic properties study on mechanically milled Ni_(0.5)Zn_(0.5)Fe _2O_4 spinel ferrite

机译:机械研磨的Ni_(0.5)Zn_(0.5)Fe _2O_4尖晶石铁氧体的红外光谱演化,弹性,光学和热力学性质研究

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摘要

This communication presents the effect of high energy ball milling induced strain and grain size reduction on Infrared spectral evolution, elastic, optical and thermodynamic properties of un-milled and 3, 6 and 9 h. milled samples of spinel ferrite composition, Ni0.5Zn0.5Fe2O4, studied by means of X-ray powder diffractometry and infrared spectroscopy measurements at 300 K. A simple approach is used for force constants determination and found to be quite satisfactory. The elastic moduli, elastic wave velocities, Debye temperature, threshold energy, molar heat capacity, refractive index, reflectivity, jump rate of charge carriers for the ferrites have been determined and they are found to vary in accordance with variation of lattice constant and milling induced strain as a function of milling time. No effect on the elastic parameters is observed due to milling induced grain size reduction. Elastic constants calculated using the relation, K_o = (60 + 490 * S_N) and heterogeneous metal mixture rule are in agreement with those determined from IR and XRD patterns analysis, validates the applicability of these approaches. The lattice energy for polycrystalline ferrite materials and single crystalline counterpart as well as electronic contribution to molar heat capacity has been calculated.
机译:该交流介绍了高能球磨诱导的应变和晶粒尺寸减小对未研磨以及3、6和9 h的红外光谱演化,弹性,光学和热力学性质的影响。通过X射线粉末衍射法和红外光谱法在300 K下研究尖晶石铁素体成分Ni0.5Zn0.5Fe2O4的研磨样品。用一种简单的方法测定力常数,结果非常令人满意。确定了铁氧体的弹性模量,弹性波速度,德拜温度,阈值能量,摩尔热容,折射率,反射率,电荷载流子的跃迁速率,发现它们随晶格常数的变化和诱发的铣削而变化。应变与铣削时间的关系。由于研磨引起的晶粒尺寸减小,未观察到对弹性参数的影响。使用关系式K_o =(60 + 490 * S_N)和非均质金属混合物规则计算出的弹性常数与从IR和XRD图案分析确定的弹性常数一致,验证了这些方法的适用性。计算了多晶铁氧体材料和单晶对应物的晶格能以及对摩尔热容的电子贡献。

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