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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Nanocrystals of CuCr2S4-xSex chalcospinels with tunable magnetic properties
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Nanocrystals of CuCr2S4-xSex chalcospinels with tunable magnetic properties

机译:具有可调磁性的CuCr2S4-xSex查尔松松的纳米晶体

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Ferromagnetic materials exhibiting large spin polarization at room temperature have been actively pursued in recent years for the development of next-generation spintronic devices. Chromium-based chalcospinels are the only ternary chalcogenide-containing magnetic materials with Curie temperatures above room temperature. However, the magnetic and electronic properties of chromium-based chalcospinels at the nanoscale level are not well understood. We have developed a facile colloidal method for the synthesis of CuCr2S4-xSex (0 <= x <= 4) nanocrystals over the entire composition range. Systematic changes in the lattice parameter and elemental composition confirm formation of CuCr2S4-xSex (0 <= x <= 4) nanocrystals. The dimensions of the nanocrystals, as determined from TEM images, vary from 12 +/- 1.4 nm to 21 +/- 1.4 nm. The Curie temperature (T-C) shows a systematic increase with increasing selenium content. Saturation magnetization and coercivity values of CuCr2S4-xSex (0 <= x <= 4) nanocrystals at 5 K are found to steadily increase up to x = 3. Electronic structure calculations as a function of composition and size using density functional theory suggest ferromagnetic ordering over the entire composition range with partial spin polarization for the bulk materials. Furthermore, the calculations predict complete opening-up of a gap at the Fermi level in the minority spin channel at reduced dimensions to render them completely spin polarized, i.e., display half-metallic characteristics.
机译:近年来,对于下一代自旋电子器件的开发,已经积极地追求在室温下表现出大自旋极化的铁磁材料。铬基查尔松酚是居里温度高于室温的唯一含三元硫族化物的磁性材料。但是,对铬基查尔斯皮尔斯在纳米级的磁性和电子性质还没有很好的了解。我们已经开发了一种在整个组成范围内合成CuCr2S4-xSex(0 <= x <= 4)纳米晶体的简便胶体方法。晶格参数和元素组成的系统变化证实了CuCr2S4-xSex(0 <= x <= 4)纳米晶体的形成。由TEM图像确定的纳米晶体的尺寸在12 +/- 1.4nm至21 +/- 1.4nm之间变化。居里温度(T-C)随着硒含量的增加而有系统地升高。发现CuCr2S4-xSex(0 <= x <= 4)纳米晶体在5 K时的饱和磁化强度和矫顽力值稳定增加至x =3。使用密度泛函理论计算电子结构与成分和尺寸的关系表明铁磁有序在整个组成范围内,散装材料具有部分自旋极化。此外,这些计算预测在少数自旋通道中费米能级的间隙将以减小的尺寸完全打开,从而使其完全自旋极化,即显示半金属特性。

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