New Approaches to the Synthesis of Functional Materials with Specified Properties under the Influence of Concentrated Radiation and Pulse Tunnel Effect
( Pp. 214-223)

More about authors
Rakhimov Rustam Kh. Doctor of Engineering; Head at the Laboratory No. 1; Institute of Materials Science of the SPA “Physics-Sun” of the Academy of Sciences of the Republic of Uzbekistan; Institute of Renewable Energy Sources
Institute of Materials Science of the SPA “Physics-Sun” of the Academy of Science of Uzbekistan
Tashkent, Republic of Uzbekistan Yermakov Vladimir P. senior research at the Laboratory No. 1; Institute of Materials Science of the Academy of Science of Uzbekistan; Tashkent, Republic of Uzbekistan
Abstract:
This article explores the prospects of synthesizing materials with a complex of specified properties using the pulsed tunneling effect (PTE) and concentrated solar radiation. The mechanisms of formation of metastable phases and the emergence of unique electrical and magnetic properties due to numerous structural distortions are described. The concept of using such materials as “artificial dopants” is proposed. Promising application areas are considered, ranging from the creation of extremely strong materials to the achievement of non-standard superconducting and magnetic effects.
How to Cite:
Rakhimov R.Kh., Yermakov V.P. New Approaches to the Synthesis of Functional Materials with Specified Properties under the Influence of Concentrated Radiation and Pulse Tunnel Effect Pulse Tunnel Effect: Fundamentals and Prospects for Application. Computational Nanotechnology. 2024. Vol. 11. No. 1. Pp. 214–223. (In Rus.) DOI: 10.33693/2313-223X-2024-11-1-214-223. EDN: EYKREQ
Reference list:
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Rakhimov R.Kh. Large Solar Furnace. Computational Nanotechnology. 2019. Vol. 6. No. 2. Pp. 141–150. (In Rus.) EDN: GRMHEX
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Rakhimov R.Kh. Possible mechanism of optical quantum tunneling effect of photocatalysts based on nanostructured functional ceramics. In: Proceedings of the VI International Conference on Optical and Photoelectric Phenomena in Semiconductor Micro- and Nanostructures (Fergana, September 28–30, 2023). Pp. 9–11.
Parpiev O.R., Suleymanov S.H., Rakhimov R.Kh. et al. Synthesis of materials on a large solar furnace. Tashkent, 2023. P. 590.
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Rakhimov R.Kh. The possibilities of pulsed energy converters as photocatalysts in hydrogen energy. Proceedings of the III International Conference “Trends in the Development of Condensed Matter Physics” (Fergana, October 30–31, 2023). Pp. 297–300.
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Rakhimov R.Kh., Ermakov V.P. Prospects of solar energy: the role of modern solar technologies in hydrogen production. Computational Nanotechnology. 2023. Vol. 10. No. 3. Pp. 11–25. (In Rus.) DOI: 10.33693/2313-223X-2023-10-3-11-25. EDN: NQBORL.
Hydrogen due to light with FC-based photocatalysts based on the ITE principle. URL: https://www.youtube.com/watch?v=2LCj_zz_Tvg
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Rakhimov R.Kh., Ermakov V.P. Prospects for the use of film-ceramic photocatalysts to increase the efficiency of microalgae cultivation in the Aral Sea zone. In: International Conference “Fundamental and Applied Problems of Modern Physics” (October 19–21, 2023). Pp. 66–68.
Rakhimov R.Kh., Ermakov V.P., Saidvaliev T.S. Prospects of using film-ceramic photocatalysts for growing microalgae. Computational Nanotechnology. 2023. Vol. 10. No. 2. Pp. 60–69. (In Rus.) DOI: 10.33693/2313-223X-2023-10-2-60-69. EDN: BTHXIR.
Rakhimov R.Kh., Pankov V.V., Ermakov V.P. et al. Investigation of the properties of functional ceramics synthesized by a modified carbonate method. Computational Nanotechnology. 2023. Vol. 10. No. 3. Pp. 130–143. (In Rus.) DOI: 10.33693/2313-223X-2023-10-3-130-143. EDN: SZDYRZ.
Rakhimov R.Kh., Mukhtorov D.N. Solar drying of fruits and vegetables using a polyethylene-ceramic composite. Computational Nanotechnology. Vol. 10. No. 4. 2023. Pp. 104–110. (In Rus.) DOI: 10.33693/2313-223X-2023-10-4-103-109. EDN: TLZMDV
Keywords:
synthesis of functional materials, pulsed tunneling effect, concentrated solar radiation, metastable phases, electrical properties, magnetic properties, artificial impurities, promising areas of application.


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