Tailored Synthesis of Iron Oxide Nanocrystals for Formation of Cuboid Mesocrystals

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Abstract

In this work, we systematically studied the shape- and size-controlled monodisperse synthesis of iron oxide nanocrystals (IONCs) for their use as building blocks in the formation of mesocrystals. For this aim, on understanding the influence of the oleic acid concentration, iron-oleate concentration, and heating rate on the synthesis of robust and reproducible IONCs with desired sizes and shapes, we synthesized highly monodisperse similar to 11 nm sized nanocubes and nanospheres. Magnetic measurements of both cubic and spherical IONCs revealed the presence of mixed paramagnetic and superparamagnetic phases in these nanocrystals. Moreover, we observed that the magnetic moments of the nanocubes are more substantial compared to their spherical counterparts. We then demonstrated a simple magnetic-field-assisted assembly of nanocubes into three-dimensional (3D) cuboid mesocrystals while nanospheres did not form any mesocrystals. These findings indicate that small cubic nanocrystals hold great promise as potential building blocks of 3D magnetic hierarchical structures with their superior magnetic properties and mesocrystal assembly capability, which may have high relevance in various fields ranging from high-density data storage to biomedical applications.

Description

Demir, Hilmi Volkan/0000-0003-1793-112X; Soran Erdem, Zeliha/0000-0001-7607-9286; Hernandez-Martinez, Pedro Ludwig/0000-0001-6158-0430; Sharma, Vijay/0000-0002-2028-5715

Keywords

Nanocubes, :Materials [Engineering], Magnetic Properties, RELAXATION, Nanocrystals, Chemistry, :Physics [Science], Magnetic properties, :Electrical and electronic engineering [Engineering], NANOPARTICLES, Nanoparticles, SHAPE, QD1-999, Transmission electron microscopy, MAGNETITE NANOCUBES, Engineering::Electrical and electronic engineering, Engineering::Materials, Science::Physics

Fields of Science

02 engineering and technology, 0210 nano-technology

Citation

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OpenCitations Citation Count
6

Source

Volume

6

Issue

31

Start Page

20351

End Page

20360