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谷胱甘肽稳定的水溶性钯纳米粒子的合成、表征及磁性能

Water-soluble Pd nanoparticles capped with glutathione: synthesis, characterization, and magnetic properties.

机构信息

Department of Chemistry, Yonsei University, Seoul 120-749, Korea.

出版信息

Langmuir. 2012 Nov 13;28(45):15958-65. doi: 10.1021/la303326u. Epub 2012 Nov 1.

Abstract

The synthesis, characterization, and magnetic properties of water-soluble Pd nanoparticles capped with glutathione are described. The glutathione-capped Pd nanoparticles were synthesized under argon and air atmospheres at room temperature. Whereas the former exhibits a bulklike lattice parameter, the lattice parameter of the latter is found to be considerably greater, indicating anomalous lattice expansion. Comparative structural and compositional studies of these nanoparticles suggest the presence of oxygen in the core lattice when Pd nanoparticles are prepared under an air atmosphere. Both Pd nanoparticles prepared under argon and air show ferromagnetism at 5 K, but the latter exhibits significantly greater coercivity (88 Oe) and magnetization (0.09 emu/g at 50 kOe). The enhanced ferromagnetic properties are explained by the electronic effect of the incorporated oxygen that increases the 4d density of holes at the Pd site and localizes magnetic moments.

摘要

本文描述了水溶性谷胱甘肽包覆钯纳米粒子的合成、表征和磁性。谷胱甘肽包覆的钯纳米粒子在氩气和空气气氛下于室温合成。前者表现出块状晶格参数,而后者的晶格参数则明显较大,表明晶格异常膨胀。对这些纳米粒子的比较结构和组成研究表明,当钯纳米粒子在空气气氛下制备时,核心晶格中存在氧。在 5 K 下,两种在氩气和空气中制备的钯纳米粒子均表现出铁磁性,但后者表现出显著更高的矫顽力(88 Oe)和磁化强度(在 50 kOe 时为 0.09 emu/g)。这种增强的铁磁性可以通过掺入氧的电子效应来解释,该效应增加了 Pd 位的 4d 空穴密度并使磁矩局域化。

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