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2022 ◽  
Vol 204 ◽  
pp. 111107
Author(s):  
Soumyasree Jena ◽  
Sanchari Bhattacharya ◽  
Sanjoy Datta
Keyword(s):  

2022 ◽  
Vol 891 ◽  
pp. 161856
Author(s):  
Gao Wang ◽  
Chunrong Li ◽  
Jindi Feng ◽  
Zhenhua Zhang ◽  
Xiaojuan Yuan ◽  
...  

2021 ◽  
Vol 104 (24) ◽  
Author(s):  
Fahimeh Norouzi ◽  
Mohsen Farokhnezhad ◽  
Mahdi Esmaeilzadeh ◽  
Bartlomiej Szafran

Author(s):  
Seungjun Lee ◽  
Hussain Alsalman ◽  
Wei Jiang ◽  
Tony Low ◽  
Young-Kyun Kwon

2021 ◽  
Vol 570 ◽  
pp. 151129
Author(s):  
Dimuthu Wijethunge ◽  
Lei Zhang ◽  
Cheng Tang ◽  
Stefano Sanvito ◽  
Aijun Du

2021 ◽  
Vol 11 (23) ◽  
pp. 11301
Author(s):  
Minh Dang Nguyen ◽  
Hung-Vu Tran ◽  
Shoujun Xu ◽  
T. Randall Lee

Magnetite (Fe3O4) nanoparticles (NPs) are attractive nanomaterials in the field of material science, chemistry, and physics because of their valuable properties, such as soft ferromagnetism, half-metallicity, and biocompatibility. Various structures of Fe3O4 NPs with different sizes, geometries, and nanoarchitectures have been synthesized, and the related properties have been studied with targets in multiple fields of applications, including biomedical devices, electronic devices, environmental solutions, and energy applications. Tailoring the sizes, geometries, magnetic properties, and functionalities is an important task that determines the performance of Fe3O4 NPs in many applications. Therefore, this review focuses on the crucial aspects of Fe3O4 NPs, including structures, synthesis, magnetic properties, and strategies for functionalization, which jointly determine the application performance of various Fe3O4 NP-based systems. We first summarize the recent advances in the synthesis of magnetite NPs with different sizes, morphologies, and magnetic properties. We also highlight the importance of synthetic factors in controlling the structures and properties of NPs, such as the uniformity of sizes, morphology, surfaces, and magnetic properties. Moreover, emerging applications using Fe3O4 NPs and their functionalized nanostructures are also highlighted with a focus on applications in biomedical technologies, biosensing, environmental remedies for water treatment, and energy storage and conversion devices.


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