04.06.01 Chemical Sciences
18.06.01 Chemical technology
PERSPECTIVE THIN-FILM MATERIALS OF SENSORICS AND ALTERNATIVE ENERGY
Scientific direction: development of the physicochemical fundamentals of heterogeneous processes at the “liquid-solid” interface, the study of the role of the prehistory of aqueous solutions.
Studied aspects:
· Principles of chemical technology for the synthesis of nanostructured films of functional materials for optical and chemical sensors;
· Synthesis of thin films of semiconductor materials for the conversion of solar radiation;
· Creation of new organic-mineral composite sorbents with a nano-dispersed active component;
· Study of the influence of the history of aqueous solutions on their behavior.
The most striking scientific results:
· A number of technologies for the hydrochemical synthesis of photosensitive films of sulfides and selenides of metals were developed for the first time to create highly sensitive infrared radiation detectors on their basis;
· Deposition from aqueous media for the first time obtained thin films of supersaturated chalcogenide substitution solid solutions for optoelectronics and sensorics;
· Developed unique thin-film chemical sensors for monitoring air and water environments.
Career opportunities: graduates of postgraduate studies are in demand at enterprises of the instrument-making complex of the country, in industrial and scientific laboratories.
Additional requirements of the supervisor:
· Good knowledge of English
· Ability for independent research
· Knowledge of analytical chemistry
· Basic knowledge of semiconductor technology
Main publications:
· V.F. Markov, L.N. Maskaev, P.N. Ivanov. Hydrochemical deposition of metal sulfide films: modeling and experiment. Ekaterinburg: Ural Branch of RAS. 2006. 218 p.
· V.F. Markov, L.N. Maskaev. Features of nucleation and the mechanism of growth of metal sulfide films during deposition by thiocarbamide. Izv. An. Chemical series. 2014. № 7. С.1523-1532.
V.F. Markov, L.N. Maskaev. Aqueous solutions: behavioral anomalies Ekaterinburg: Publishing House Uralsk. un-that. 2017. 242 p.
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Created / Updated: 24 March 2019 / 9 February 2022
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