Summary of Chemistry doctoral thesis: Synthesis and properties of ferrite - metal (Ag, Au) hybrid nanostructures for biomedical application

This work aims to fabricate ferrite - (Ag, Au) hybrid nanomaterials with a SPR peak located in the near-infrared region, high magnetic/optical-to-thermal conversion and ability to contrast MRI images for both T1- and T2- weighted modes, which are strongly bactericidal and able to be applied in biomedicine. | MINISTRY OF VIETNAM ACADEMY OF EDUCATION AND TRAINING SCIENCE AND TECHNOLOGY GRADUATE UNIVERSITY SCIENCE AND TECHNOLOGY _____________________ NGUYEN THI NGOC LINH SYNTHESIS AND PROPERTIES OF FERRITE - METAL Ag Au HYBRID NANOSTRUCTURES FOR BIOMEDICAL APPLICATION Major Inorganic chemistry Code SUMMARY OF CHEMISTRY DOCTORAL THESIS Ha Noi - 2020 This thesis was done at Laboratory of Electronic-Electrical Engineering Institute for tropical technology Vietnam Academy of Science and Technology. Laboratory of Biomedical Nanomaterials Institute of Materials and Science Vietnam Academy of Science and Technology. Supervisor 1 PhD. Le Trong Lu Supervisor 2 . PhD. Ngo Dai Quang Reviewer 1 Prof. PhD. Thai Hoang Reviewer 2 . PhD. Huynh Dang Chinh Reviewer 3 . PhD. Nguyen Thi Hien Lan The dissertation will be defended at Graduate University of Science and Technology 18 Hoang Quoc Viet street Hanoi. Time . . 2020 This thesis could be found at National Library of Vietnam Library of Graduate University of Science and Technology Library of Vietnam Academy of Science and Technology. INTRODUCTION 1. The necessary of the thesis In recent years hybrid nanomaterials have attracted the attention of many researchers due to their integrated properties from individual components. The combination of magnetic and optical properties on a nanostructure has improved the application of single nanoparticles NPs and opened new directions in biomedical applications especially in diagnosis and treatment. The advantage of magneto- plasmonic hybrid nanostructures in this area is that the desired target has merely been achieved after being activated by a physical stimulus thus minimizing damaging effects on body. Furthermore several functions can work synergically to enhance the efficiency in therapeutic methods. Currently many magneto-plasmonic hybrid nanostructures have been studied in order to apply in the biomedical field in which Fe3O4 Au .

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