Optical Spectra of Composite Materials Based on Molybdenum- Containing Nanoparticles and High-Pressure Polyethylene

Author:

Fionov A. S.1,Kolesov V. V.1,Fionova V. A.2,Taratanov N. A.3,Golovanov E. V.1,Dzhangurazov E. B.4,Beshtoev B. Z.4,Voronov A. S.5,Yurkov G. Yu.4

Affiliation:

1. Kotelnikov Institute of Radio Engineering and Electronics, Russian Academy of Sciences

2. Bauman Moscow State Technical University

3. Ivanovo Fire and Rescue Academy of the State Fire Service of the Ministry of Emergency Situations of Russia

4. Semenov Federal Research Center for Chemical Physics, Russian Academy of Sciences

5. State Scientific Center of the Russian Federation Troitsk Institute of Innovation and Thermonuclear Research

Abstract

Molybdenum-containing composite nanomaterials are synthesized by the thermal decompositionof molybdenum hexacarbonyl in a solution-melt of polyethylene in mineral oil. The concentration of a metalcontainingfiller in the composite materials varied from 1 to 20 wt %. A technique for preparing film samplesfor spectroscopic studies is developed, and the samples obtained are studied by UVI, IR, and Raman spectroscopy.It is found that additional absorption bands appear in the IR range, whose intensity depends on theconcentration of molybdenum-containing nanoparticles in the composite materials. The spectral characteristicsof Raman scattering show that all samples are characterized by the stretching of the C–C bond. In thevisible light region, the spectrum of nanocomposites has a flat edge of its own absorption located in the regionof wave numbers (18–31) × 103 cm–1.

Publisher

The Russian Academy of Sciences

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