Hybrid magnetic nanoparticles as efficient nanoheaters in biomedical applications

Author:

Lavorato Gabriel C.1234ORCID,Das Raja56789,Alonso Masa Javier10111213ORCID,Phan Manh-Huong14151617ORCID,Srikanth Hariharan14151617ORCID

Affiliation:

1. Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicadas (INIFTA-CONICET)

2. Universidad Nacional de La Plata

3. 1900 La Plata

4. Argentina

5. Faculty of Materials Science and Engineering and Phenikaa Institute for Advanced Study (PIAS)

6. Phenikaa University

7. Hanoi

8. Vietnam

9. Phenikaa Research and Technology Institute (PRATI)

10. Departamento CITIMAC

11. Universidad de Cantabria

12. Santander 39005

13. Spain

14. Department of Physics

15. University of South Florida

16. 33620 Tampa

17. USA

Abstract

In this minireview we discuss and provide a perspective on the novel systems, the synthesis routes and the interface-mediated properties that determine the heating efficiency of hybrid magnetic nanoparticles.

Funder

Agencia Nacional de Promoción Científica y Tecnológica

U.S. Department of Energy

National Foundation for Science and Technology Development

Publisher

Royal Society of Chemistry (RSC)

Subject

General Engineering,General Materials Science,General Chemistry,Atomic and Molecular Physics, and Optics,Bioengineering

Reference237 articles.

1. C. Blanco-Andujar , F. J.Teran and D.Ortega , in Iron Oxide Nanoparticles for Biomedical Applications , Elsevier , 2018 , pp. 197–245

2. Heating at the Nanoscale through Drug-Delivery Devices: Fabrication and Synergic Effects in Cancer Treatment with Nanoparticles

3. Magnetothermal Multiplexing for Selective Remote Control of Cell Signaling

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