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Monolayer CoPt magnetic nanoparticle array using multiple thin film depositions

机译:使用多个薄膜沉积的单层CoPt磁性纳米颗粒阵列

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摘要

A monolayer of L1_0 CoPt nanoparticles was prepared on a polyimide film by depositing Co-Pt and annealing the resulting film stack at 650-800℃. To obtain well-separated magnetic nanoparticles avoiding substantial coarsening often seen on annealing of thicker films, a multiple deposition of thinner Co-Pt alloy films with intentionally increased Co composition was employed. The multiple depositions relying on heterogeneous nucleation on the preexisting CoPt nanoparticles allowed the average particle size to increase from 4 to 7 nm. The monolayer of 7 nm sized CoPt nanoparticles exhibited a coercivity of 9.8 kOe with a remanence ratio of 0.72.
机译:通过沉积Co-Pt并在650-800℃下退火得到的膜叠层,在聚酰亚胺膜上制备L1_0 CoPt纳米颗粒的单层膜。为了获得良好分离的磁性纳米颗粒,避免了通常在较厚的薄膜退火时经常出现的粗大化,采用了有意增加Co组成的较薄Co-Pt合金薄膜的多次沉积。依靠预先存在的CoPt纳米颗粒上的异质成核的多次沉积,可以使平均粒径从4 nm增加到7 nm。 7 nm大小的CoPt纳米颗粒的单层显示矫顽力为9.8 kOe,剩磁比为0.72。

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