INVESTIGATION OF OPTICAL AND PHOTO-THERMAL PROPERTIES OF BIO-FUNCTIONAL NANOPARTICLES OF TRANSITION METAL OXIDES IN THE INTERACTION WITH THE LASER RADIATION

Omelchenko Alexander Ivanovich1, Gulyaev Pavel Urevich2, Kotvanova Margarita Kondratevna3
1Institute of Laser and Information Technologies of the Russian Academy of Sciences, Candidate of Physical and Mathematical Sciences, Senior Researcher
2Ugra State University, Dr. Technical Science, Head of the Department of physical chemistry processes and materials
3Ugra State University, Ph.D., Professor, Department of Chemistry

Abstract
The paper presents the results of treatment of products of SH-synthesis of the transition metal complex oxides expressed high photo-thermal effect. Problem of creation of biofunctional nanoparticles from the products of SH-synthesis of metal oxide bronzes with composition of AхO•BОy, where A=К, Н, Na, B=Ti, Mo, W, 0<x<2, y=2, 3. In the results of a number technological operations, such as material fragmentation, nanoparticles size separation and functionalization of nanoparticles, it were obtained a nanoparticles with the specified properties. Optical technique for control of maximal size of nanoparticles in aqueous solution and optical has been developed and optical properties of these nanoparticles were studied, as well. The results of this paper to be suggested to use in nanotechnology of production of biofunctional nanoparticles with high photo-thermal effect of laser radiation. The reported study was funded by RFBR according to the research project No. 15-42-00106.

Keywords: biofunctional nanoparticles, cartilage, heating photothermal effect, high-temperature synthesis, laser medicine, mechanochemistry


Category: 01.00.00 Physics and mathematics

Article reference:
Investigation of optical and photo-thermal properties of bio-functional nanoparticles of transition metal oxides in the interaction with the laser radiation // Modern scientific researches and innovations. 2016. № 1 [Electronic journal]. URL: https://web.snauka.ru/en/issues/2016/01/61958

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