1. Rykov S.V., Kudryavtseva I.V., Rykov V.A., Ustyuzhanin E.E. Description of the liquid-vapor phase equilibrium line of pure substances within the bounds of scale theory based on the Clapeyron equation. J. Phys.: Conf. Ser. 2021. V. 2057 P. 012113.
2. Rykov V.A., Rykov S.V., Sverdlov A.V. Fundamental equation of state for R1234yf. J. Phys.: Conf. Ser. 2019. V. 1385. P. 012013.
3. Tsvetkov O.B., Mitropov V.V., Laptev Yu.A. Thermal conductivity of liquid hydrofluorochloroderivatives of olefins. Correlations and a priori estimates. Journal of International Academy of Refrigeration. 2021. No 3. P. 75-80. DOI: 10.17586/1606-4313-2021-20-3-75-80 (in Russian)
4. Tomassetti S., Di Nicola G., Kondou Ch. Triple point measurements for new low- global-warming-potential refrigerants: Hydro-fluoro-olefins, hydro-chloro-fluoro-olefins, and trifluoroiodomethane. Int. J. Refrig. 2022. V. 133. P. 172-180.
5. Ma Sh. Modern Theory of Critical Phenomena (New York, NY: Roudedge). 2018.
6. Di Nicola G., Brandoni C., Di Nicola C., Giuliani G. Triple point measurements for alternative refrigerants.J. Therm. Anal. Calorim. 2012. V. 108. P. 627-631.
7. Akasaka R., Lemmon E.W. Fundamental Equations of State for cis-1,3,3,3-Tetrafluoropropene [R-1234ze(Z)] and 3,3,3-Trifluoropropene (R-1243zf). J. Chem. Eng. Data. 2019. V. 64. P. 4679-4691.
8. Sakoda N., Higashi Y., Akasaka R. Measurements of PvT Properties, Vapor Pressures, Saturated Densities, and Critical Parameters for trans-1,1,1,4,4,4-Hexafluoro-2-butene (R1336mzz(E)). J. Chem. Eng. Data. 2021. V. 66. P. 734-739.
9. Haowen G., Xilei W., Yuan Zh., Zhikai G., Xiaohong H., Guangming Ch. Experimental and Theoretical Research on the Saturated Liquid Thermal Conductivity of HFO-1336mzz(E). Ind. Eng. Chem. Res. 2021. V. 60. P. 9592-9601.
10. McLinden M.O., Akasaka R. Thermodynamic Properties of cis-1,1,1,4,4,4-Hexafluorobutene [R‑1336mzz(Z)]: Vapor Pressure, (p, ρ, T) Behavior, and Speed of Sound Measurements and Equation of State.J. Chem. Eng. Data. 2020. V. 65. P. 4201-4214.
11. Perkins R.A., Huber M.L. Measurement and Correlation of the Thermal Conductivity of cis‑1,1,1,4,4,4‑hexafluoro‑2‑butene. Int. J. Thermophys. 2020. V. 41. P. 103.
12. Sakoda N., Higashi Y., Akasaka R. Measurements of Vapor Pressures for trans-1-Chloro-3,3,3-trifluoropropene (R1233zd(E)) and cis-1,1,1,4,4,4-Hexafluoro-2-butene (R1336mzz(Z)). J. Chem. Eng. Data. 2020. V. 65. P. 4285-4289.
13. Brown J.S., Di Nicola G., Fedele L., Bobbo S., Zilio C. Saturated pressure measurements of 3,3,3-trifluoroprop-1-ene (R1243zf) for reduced temperatures ranging from 0.62 to 0.98. Fluid Phase Equilib. 2013. V. 351. P. 48-52.
14. Higashi Y., Sakoda N., Islam Md.A., Takata Y., Koyama Sh., Akasaka R. Measurements of Saturation Pressures for Trifluoroethene (R1123) and 3,3,3-Trifluoropropene (R1243zf). J. Chem. Eng. Data. 2018. V. 63. P. 417-421.
15. Yang Zh., Tang X., Wu J., Lu J. Experimental measurements of saturated vapor pressure and isothermal vapor-liquid equilibria for 1,1,1,2-Tetrafluoroethane (HFC-134a) + 3,3,3-trifluoropropene (HFO-1243zf) binary system. Fluid Phase Equilib. 2019. V. 498. P. 86–93.
16. Yin J., Ke J., Zhao G., Ma S. Saturated vapor pressure and gaseous pvT property measurements for 3,3,3-trifluoroprop-1-ene (R1243zf). Int. J. Refrig. 2020. V. 117. P. 175-180.
17. Ding L., Yao X., Hou Y., Zhao Y., Dong X., Gong M. Isothermal (vapour-liquid) equilibrium for the binary {3,3,3-trifluoropropene (R1243zf) + propane(R290)} system at temperatures from 243.150 K to 288.150 K. J. Chem. Thermodyn. 2020. V. 144. P. 106091.
18. Yao X., Ding L., Dong X., Zhao Y., Wang X., Shen J., Gong M. Experimental measurement of vapor-liquid equilibrium for 3,3,3-trifluoropropene (R1243zf) + 1,1,1,2-tetrafluoroethane (R134a) at temperatures from 243.150 to 293.150 K. Int. J. Refrig. 2020. V. 120. P. 97-103.
19. Tanaka K., Ishikawa J., Kontomaris K.K. Thermodynamic properties of HFO-1336mzz(E) (trans-1,1,1,4,4,4-hexafluoro-2-butene) at saturation conditions. Int. J. Refrig. 2017. V. 82. P. 283-287.
20. Boonaert E., Valtz A., Brocus J., Coquelet Ch., Beucher Y., De Carlan F., Fourmigué J. Vapor-Liquid equilibrium measurements for 5 binary mixtures involving HFO-1336mzz(E) at temperatures from 313 to 353 K and pressures up to 2.735 MPa.Int. J. Refrig. 2020. V. 114. P. 210-220.
21. Raabe G. Molecular Simulation Studies on the Vapor-Liquid Equilibria of the cis- and trans-HCFO-1233zd and the cis- and trans-HFO-1336mzz. J. Chem. Eng. Data. 2015. V. 60. P. 2412-2419.
22. Li Sh., Xu L., Liu H., Yang Zh., Duan Y. Vapor Pressure Measurements and Correlation for cis-1,1,1,4,4,4-Hexafluoro-2-butene (HFO-1336mzz(Z)). J. Chem. Eng. Data. 2020. V. 65. P. 4223-4229.
23. Tanaka K., Akasaka R., Sakaue E., Ishikawa J., Kontomaris K.K. Thermodynamic Properties of cis-1,1,1,4,4,4-Hexafluoro-2-butene (HFO-1336mzz(Z)): Measurements of the pρT Property and Determinations of Vapor Pressures, Saturated Liquid and Vapor Densities, and Critical Parameters. J. Chem. Eng. Data. 2016. V. 61. P. 2467-2473.
24. Rykov S.V., Kudryavtseva I.V., Rykov V.A., Ustyuzhanin E.E., Ochkov V.F. Analysis of the saturation line on the basis of Clapeyron-Clausius and Gibbs-Duhem equations. J. Phys. Conf. Ser. 2019. V. 1147. P. 012017.
25. Forsythe G.E., Malcolm M.A., Moler C.B. 1977. Computer Methods for Mathematical Computations (Englewood Cliffs, NJ: Prentice-Hall).
26. Rykov S.V., Kudryavtseva I.V., Rykov S.A., Rykov V.A. Workshop on working in the mathematical package MathCAD: St. Petersburg: ITMO University, 2015. 84 p. (in Russian)
27. Kolobaev V.A., Rykov S.V., Kudryavtseva I.V., Ustyuzhanin E.E., Popov P.V., Rykov V.A., Sverdlov A.V., Kozlov A.D. Methodology for constructing the equation of state and thermodynamic tables for a new generation refrigerant. Measuring equipment. 2021. No 2. P. 9-15. (in Russian)
28. Rykov S.V.,Kudryavtseva I.V.,Rykov V.A.,Nurysheva M., Kurbanov B.Ch. A ethane phase equilibrium lines. Journal of International Academy of Refrigeration. 2021. No 2. P. 98-104. DOI: 10.17586/1606-4313-2021-20-2-98-104. (in Russian)
29. Rykov S.V., Kudriavtseva, I.V. Sverdlov A.V., Rykov V.A. Calculation method of R1234yf phase equilibrium curve within temperature range from 122.6 K to 367.85 K. AIP Conf. Proc. 2020. V. 2285. P. 030070.
30. Kudryavtseva I.V., Rykov V.A., Rykov S.V., Ustyuzhanin E.E. A model system of the liquid density, the gas density and the pressure on the saturation line of SF6 // J. Phys.: Conf. Ser. 2019. V. 1385. P. 012010
31. Rykov S.V., Rykov V.A., Kudryavtseva I.V., Ustyuzhanin E.E., Sverdlov A.V. Fundamental equation of state of argon, satisfying the scaling hypothesis and working in the region of high temperatures and pressures. Mathematica Montisnigri. 2020. V. 47. P. 124-136.
32. Kudryavtseva I.V., Rykov V. A., Rykov S. V., Ustyuzhanin E. E. A new variant of a scaling hypothesis and a fundamental equation of state based on it. J. Phys.: Conf. Ser. 2018. V. 946. P. 012118.
33. Walas S.M. Phase Equilibria in Chemical Engineering (Butterworth Publishers). 1985.
34. Tsvetkov O.B., Laptev Yu.A., Mitropov V.V., Sharkov A.V., Fedorov A.V. Interpretation of photonic model for trans-1-chloro-3,3,3-trifluoropropene (HFO-1233zd(E)) thermal conductivity for the liquid branch of the bimodal. Journal of International Academy of Refrigeration. 2020. No 1. P. 103-107.(in Russian)