1. A.M. Savel’ev, A.M. Starik, and B.I. Brainin, Analysis of the energetic efficiency of using the combined hydrocarbon fuels with non-metallic and metallic nanocomponents in jet engines, Nonequillibrium Physicochemical Processes in Gas Flows and New Principles of Combustion Organization, (A.M. Starik, ed.), Torus Press, Moscow, 2011, P. 669–695.
2. V.I. Terekhov, S.V. Kalinina, and V.V. Lemanov, The mechanism of heat transfer in nanofluids: state of the art (review). Part 1. Synthesis and properties of nanofluids, Thermophysics and Aeromechanics, 2010, Vol. 17, No. 1, P. 1–14.
3. V.Ya. Rudyak, A.V. Minakov, and S.L. Krasnolutskii, Physics and mechanics of heat exchange processes in nanofluid flows, Physical Mesomechanics, 2016, Vol. 19, P. 298–306.
4. E.N. Slobodina, A.G. Mikhailov, and I.A. Podlinskii, Nanofluids: perspectives for application in heat sources, Aktualnye Voprosy Energetiki, 2022, Vol. 4, No. 1, P. 20–24.
5. A.N. Makeev and Ya.A. Kiryukhin, Problems and perspectives of using nanofluids in thermal power industry, Herald of Dagestan State Technical University, Tech. Sciences, 2022, Vol. 49, No. 3, P. 24–31.