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Effect of cooling rate on size-dependent atomic ordering of CoPt nanoparticles

机译:冷却速率对CoPt纳米粒子尺寸依赖性原子有序化的影响

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We report on the effect of cooling rate on the size-dependent atomic ordering of CoPt nanoparticles using aberration corrected high-resolution transmission electron microscopy. It was found that cooling rate plays a crucial role in promoting atomic ordering during the cooling process after annealing. Nanoparticles of ≈3nm in diameter show the A1-disordered phase after annealing at 873 K for 1 h followed by rapid cooling (110K/min), while the L1_0-ordered phase is obtained when the cooling rate is slow (1.5K/min). The disordered phase is also obtained by rapid cooling after annealing at 973 K for 1h. These results unambiguously indicate that the order-disorder transformation temperature is reduced to a temperature at least lower than 873 K for CoPt nanoparticles smaller than 3 nm in diameter. The slow cooling process promotes the atomic ordering, which resulted in an enhancement of magnetic coercivity as high as 2200 Oe. This study demonstrates that hard magnetic properties of the CoPt nanoparticles can be improved by controlling the cooling rate after heat treatments.
机译:我们报告使用像差校正高分辨率透射电子显微镜观察冷却速率对CoPt纳米粒子尺寸依赖的原子有序化的影响。发现在退火后的冷却过程中,冷却速率在促进原子有序化中起关键作用。直径约3nm的纳米粒子在873 K退火1小时后快速冷却(110K / min)后显示出A1无序相,而在冷却速率较低(1.5K / min)时获得了L1_0有序相。 。无序相也是在973 K退火1h后通过快速冷却获得的。这些结果清楚地表明,对于直径小于3nm的CoPt纳米颗粒,有序-无序转变温度降低到至少低于873K的温度。缓慢的冷却过程促进了原子的有序化,从而导致了高达2200 Oe的磁矫顽力的提高。这项研究表明,通过控制热处理后的冷却速率可以改善CoPt纳米颗粒的硬磁性能。

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