INFLUENCE OF CRYSTALLITE SIZE ON MAGNETIC PROPERTIES OF ACICULAR GAMMA-FE2O3 PARTICLES

被引:363
作者
BERKOWIT.AE
SCHUELE, WJ
FLANDERS, PJ
机构
[1] IBM Systems Development Division, Essex Junction, VT
[2] University of Pennsylvania, Philadelphia, PA
关键词
D O I
10.1063/1.1656256
中图分类号
O59 [应用物理学];
学科分类号
摘要
Magnetic properties have been measured for a number of samples of acicular γ-Fe2O3 particles of the type used in magnetic recording tapes. The average particle size and shape were approximately the same for all samples. However, the average crystallite sizes of the samples, as determined from x-ray line broadening, ranged from 50 to 700 Å. All magnetic properties measured showed a strong dependence on average crystallite size. Saturation magnetization at room temperature, σ, decreased sharply with decreasing crystallite size. An excellent fit to the σ vs crystallite size data was made by assuming that the crystallites were separated by a nonmagnetic grain boundary on the order of 6 Å wide. Room-temperature coercive force decreased with decreasing crystallite size, and the ratio H c(83°K)/Hc(293°K) increased sharply with decreasing crystallite size. The data support a particle model in which the constituent crystallites interact magnetostatically across nonmagnetic grain boundaries. A critical crystallite diameter of order 400 Å may be inferred. Below this crystallite size, superparamagnetic behavior is observed; above this size, noncoherent magnetization reversals in the crystallites are suggested. This model is quite consistent with the fanning" mode of reversal based on a "chain-of-spheres" model which has been considered by several authors to be most compatible with their data on γ-Fe 2O3 particle assemblies. © 1968 The American Institute of Physics."
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页码:1261 / &
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