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在微波辐射下一锅法制备磁性 Cu-Ni(核壳)纳米粒子。

Magnetic Cu-Ni (core-shell) nanoparticles in a one-pot reaction under microwave irradiation.

机构信息

Graduate School of Engineering, Osaka University, 2-1 Yamada-oka Suita, Osaka 565-0871, Japan.

出版信息

Nanoscale. 2010 Apr;2(4):515-23. doi: 10.1039/b9nr00302a. Epub 2010 Jan 9.

Abstract

We successfully prepared face-centered cubic (fcc) Cu-Ni (core-shell) nanoparticles by intramolecular reduction of formate complexes of Cu(2+) and Ni(2+) with long-chain amine ligands in a one-pot reaction within an extremely short time realized only under microwave irradiation. Observation by an HAADF-STEM technique showed that the nanostructure in one particle consisted of a Ni-rich shell and a Cu-rich core. Cu(4)Ni(6) nanoparticles with an average size of 11.7 nm were comprised of a Cu core with a diameter of ca. 6.0 nm, a Ni shell ca. 1.6 nm thick and a 0.9 nm thick interlayer of mixed Cu-Ni alloy between the Cu core and the Ni shell. Both the oxidation characteristics and the magnetic properties were dramatically affected by the molar ratios of Cu : Ni in the Cu-Ni nanoparticles. The magnetization of Cu(3)Ni(7) and Cu(4)Ni(6) comprised of a diamagnetic Cu-rich core, ferromagnetic Ni-rich shell and antiferromagnetic NiO-rich layer on the particle surface showed an exchange bias (209 and 143 Oe, respectively).

摘要

我们成功地通过在一锅反应中用长链胺配体将 Cu(2+)和 Ni(2+)的甲酸盐配合物进行分子内还原,在极其短的时间内(仅在微波辐射下)制备出面心立方(fcc)Cu-Ni(核壳)纳米粒子。高角度环形暗场扫描透射电子显微镜(HAADF-STEM)观察表明,一个粒子中的纳米结构由富 Ni 壳和富 Cu 核组成。Cu(4)Ni(6)纳米粒子的平均尺寸为 11.7nm,由直径约为 6.0nm 的 Cu 核、约 1.6nm 厚的 Ni 壳和 Cu 核与 Ni 壳之间 0.9nm 厚的混合 Cu-Ni 合金层组成。Cu-Ni 纳米粒子中 Cu : Ni 摩尔比显著影响其氧化特性和磁性。由富 Cu 核、铁磁 Ni 富壳和粒子表面富反铁磁 NiO 层组成的 Cu(3)Ni(7)和 Cu(4)Ni(6)的磁化强度分别表现出交换偏置(209 和 143 Oe)。

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