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交换耦合双磁性钴/氧化铁分支纳米晶体异质结构

Exchange-coupled bimagnetic cobalt/iron oxide branched nanocrystal heterostructures.

作者信息

Casavola Marianna, Falqui Andrea, García Miguel Angel, García-Hernández Mar, Giannini Cinzia, Cingolani Roberto, Cozzoli P Davide

机构信息

Scuola Superiore ISUFI, University of Salento, Distretto Tecnologico ISUFI, via per Arnesano km 5, I-73100 Lecce, Italy.

出版信息

Nano Lett. 2009 Jan;9(1):366-76. doi: 10.1021/nl803151n.

Abstract

A colloidal seeded-growth strategy, relying on time-programmed delivery of selected stabilizing surfactants, has been developed to synthesize bimagnetic hybrid nanocrystals (HNCs) that consist of a single-crystal tetrapod-shaped skeleton of ferrimagnetic (FiM) iron oxide functionalized with multiple polycrystalline spherical domains of ferromagnetic (FM) Co. Due to the direct bonding interfaces formed between the two materials at the relevant junction regions, the HNCs exhibit FiM-FM exchange coupling, which transcribes into a rich scenario of significantly modified properties (not otherwise achievable with any of the single components or with their physical mixtures), including higher saturation magnetization and coercitivity values, exchange biasing, and enhanced thermal stability due to induced extra anisotropy. The availability of these new types of HNCs suggests that development of appropriate synthetic tools for arranging distinct material domains in predetermined spatial arrangements could lead to a more rational design of nanoheterostructures potentially exploitable as active elements in future generations of magnetic recording devices.

摘要

一种基于时间程序递送选定稳定表面活性剂的胶体种子生长策略已被开发出来,用于合成双磁性混合纳米晶体(HNCs),其由具有多个铁磁(FM)Co多晶球形域功能化的亚铁磁(FiM)氧化铁的单晶四足形状骨架组成。由于两种材料在相关连接区域形成了直接键合界面,HNCs表现出FiM-FM交换耦合,这转化为一系列丰富的显著改性特性(这是任何单一成分或其物理混合物都无法实现的),包括更高的饱和磁化强度和矫顽力值、交换偏置以及由于诱导的额外各向异性而增强的热稳定性。这些新型HNCs的出现表明,开发用于将不同材料域按预定空间排列进行排列的合适合成工具,可能会导致对纳米异质结构进行更合理的设计,这些纳米异质结构有可能被用作下一代磁记录设备中的活性元件。

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