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Печатные работы:
- Клындюк А.И., Петров Г.С., Чижова Е.А. Физическая химия: учебник.– Минск: Адукацыя i выхаванне, 2024.– 438 с. (с грифом МО)
- Клындюк А.И. Поверхностные явления и дисперсные системы: учебник. – Минск: РИВШ, 2024.– 396 с. (с грифом МО)
- Клындюк А.И., Петров Г.С., Чижова Е.А. Физическая химия: учеб. пособие для студентов химико-технологических специальностей.– Минск: БГТУ, 2013.– 300 с. (с грифом МО)
- Клындюк А.И. Поверхностные явления и дисперсные системы: учеб. пособие для студентов химико-технологических специальностей.– Минск: БГТУ, 2011.– 317 с. (с грифом МО)
- Дудчик Г.П., Курило И.И., Болвако А.К., Богдан Е.О., Клындюк А.И., Чижова Е.А. Физическая химия. Лабораторный практикум: учеб.-метод. Пособие для студентов химико-технологических специальностей.– Минск: БГТУ, 2024.– 188 с. (с грифом УМО)
- Клындюк?А.И., Шевченко?С.В., Тарасевич?А.В., Чижова?Е.А. Поверхностные явления и дисперсные системы. Лабораторный практикум для студентов химико-технологических специальностей.– Минск: БГТУ, 2022.–77 с. (с грифом УМО)
- Клындюк А.И., Чижова Е.А. Физическая химия: учеб.-метод. пособие для практических и лабораторных занятий по разделам ?Основы химической термодинамики?, ?Химической равновесие?, ?Фазовое равновесие? для студентов специальностей 1-48 01 01, 1-48 01 02, 1-48 01 04, 1-48 02 01, 1-47 02 01, 1-54 01 03.– Минск: БГТУ, 2015.– 174 с. (с грифом УМО)
- Клындюк А.И., Чижова Е.А. Физическая химия: учеб.-метод. пособие для практических и лабораторных занятий по разделу ?Химическая кинетика? для студентов специальностей 1-48 01 01, 1-48 01 02, 1-48 01 04, 1-48 02 01, 1-47 02 01, 1-54 01 03. – Минск: БГТУ, 2012.– 125 с. (с грифом УМО)
- Дудчик Г.П., Клындюк А.И., Чижова Е.А. Физическая химия: пособие для студ. спец. 1-48 01 01, 1-48 01 02, 1-48 01 04, 1-48 02 01, 1-47 02 01, 1-54 01 03.– Минск: БГТУ, 2008.– 148 с.. (с грифом УМО)
- Klyndyuk A.I., Matsukevich I.V., Latypov R.S., Vete?ka P., Hanzel O., Chizhova E.A., Janek M. Effects of bismuth substitution and phase inhomogeneity on thermoelectric performance of layered calcium cobaltite ceramics // Materials Research Bulletin, Volume 202, 2026, 114129. https://doi.org/10.1016/j.materresbull.2026.114129.
- Krasutskaya N.S. Chizhova E.A., Zizika Ju.Yu., Buka A.V., Wang H., Klyndyuk A.I. Improving of Thermoelectric Efficiency of Layered Sodium Cobaltite Through its Doping by Different Metal Oxides // Ceramics, 2025, 8(3), 86. https://doi.org/10.3390/ceramics8030086
- Zhuravleva?Ya.Yu., Klyndyuk A.I., Tugova E.A., Gundilovich?N.N., Tomkovich M.V. Structural, thermal and electrical properties of the ceramics in the NdBaFe2/3Co2/3Cu2/3O6–δ–NdSrFe2/3Co2/3Cu2/3O6–δ system //Solid State Sciences. 2025. Vol. 163. 107906. https://doi.org/10.1016/j.solidstatesciences.2025.107906
- Cao P., Yao J., Sun Y., Klyndyuk A. I.,Li Z.,Abbas A., Krasutskaya N.S., Su W., Wang Ch., Wang H. Optimized configuration entropy for synergistic enhancement of thermoelectric performance for SrTiO3-based ceramics // Journal of the European Ceramic Society. 2025. 45 (22):117290. https://doi.org/10.1016/j.jeurceramsoc.2025.117290
- Chizhova E.A., Marozau M.V., Shevchenko S.V., Klyndyuk A.I., Zhuravleva?Ya.Yu., Kononovich V.M. Structure and electrical transport properties of cation-deficient derivatives of layered neodymium–barium ferrocuprocobaltite // Condensed Matter and Interphases. 2024; 26(2): 339–348. https://doi.org/10.17308/kcmf.2024.25/11945
- Matys V.G., Klyndyuk A.I.? Teaching electrochemistry at the Belarusian State Technological University // Journal of Solid State Electrochemistry. 2024. Vol. 28. No. 3–4. P. 1233–1241. https://doi.org/10.1007/s10008-023-05776-4
- Klyndyuk A.I., Kharytonau D.S., Matsukevich I.V., Chizhova E.A., Len?é? Z., Socha R.P., Zimowska M., Hanzel O., Janek M. Effect of cationic nonstoichiometry on thermoelectric properties of layered calcium cobaltite obtained by field assisted sintering technology (FAST) // Ceramics International. 2024. Vol. 50. Iss. 17. Part B. P. 30970–30979. https://doi.org/10.1016/j.ceramint.2024.05.402
- Krasutskaya N.S.; Klyndyuk A.I.; Evseeva L.E.; Gundilovich N.N.; Chizhova E.A.; Paspelau A.V. Enhanced Thermoelectric Performance of Na0.55CoO2 Ceramics Doped by Transition and Heavy Metal Oxides // Solids. 2024, Vol.5, P. 267–277. https://doi.org/10.3390/solids5020017
- Chizhova E.A., Klyndyuk A.I., Zhuravleva Ya.Yu. Shevchenko S.V. Electrical transport and thermal properties of NdBa1–xMgxFeCo0.5Cu0.5O5+d(0.00???x???0.40) solid solutions // Glass Physics and Chemistry. 2023.Vol. 49. N1. P. 57–62. https://doi.org/10.1134/S1087659622600910
- Klyndyuk A.I., Zhuravleva Ya.Yu., Gundilovich N.N., Chizhova E.A. Structural, Thermal, and Electrical Properties of Solid Solutions in the NdBaFeCo0.5Cu0.5O5+d–NdSrFeCo0.5Cu0.5O5+dSystem // Inorganic Materials. 2023. Vol. 59, No. 1. P. 86–92. https://doi.org/10.1134/S0020168523010089
- Klyndyuk A.I., Chizhova E.A., Kharytonau D.S., Medvedev D.A. Layered oxygen-deficient double perovskites as promising cathode materials for solid oxide fuel cells // Materials. 2022. 15(1). 141. https://doi.org/10.3390/ma15010141
- Klyndyuk А.I.,? Kharytonau D.S., Mosia?ek M., Chizhova E.A., Komenda A., Socha R.P., Zimowska? M. Double substituted NdBa(Fe,Co,Cu)2O5+d layered perovskites as cathode materials for intermediate-temperature solid oxide fuel cells – correlation between structure and electrochemical properties // Electrochimica Acta. 2022. P. 140062. https://doi.org/10.1016/j.electacta.2022.140062
- Margiani N., Zhghamadze G., Mumladze G., Kvartskhava I., Adamia Z., Klyndyuk A., Kuzanyan A. Impact of Graphene Addition on the Microstructure and Thermoelectric Properties of Bi2Sr2Co1.8Oy Ceramics // Bulletin of the Georgian National Academy of Sciences. 2022. Vol. 16. No1. P. 17–24.
- Mumladze G.A., Kvartskhava I.G., Zhghamadze V.V., Margiani N.G., Klyndyuk A.I., Kuzanyan A.S. Effect of Pb(BO2)2 doping on power factor of Bi2Sr2Co1.8Oy thermoelectric ceramics // Acta Physica Polonica A. 2022. Vol. 141, No.4. P. 319–322.
- Klyndyuk A.I., Mosialek M., Kharitonov D.S., Chizhova E.A., Zimovska M., Socha R.P., Komenda A. Structural and electrochemical characterization of YBa(Fe,Co,Cu)2O5+δ layered perovskites as cathode materials for solid oxide fuel cells // International Journal of Hydrogen Energy. 2021. Vol. 46. Iss. 32. P. 16977–16988. https://doi.org/10.1016/j.ijhydene.2021.01.141
- Klyndyuk A.I., Zhuravleva Ya.Yu., Gundilovich N.N. Crystal structure, thermal and electrotransport properties of NdBa1–xSrxFeCo0.5Cu0.5O5+d (0.02???x???0.20) solid solutions // Chimica Techno Acta. 2021. Vol. 8, N 3. P.?2021830.
- Kovalenko A.N., Tugova E.A., Popkov V.I., Karpov O.N., Klyndyuk A.I. Personalized energy systems based on nanostructured materials // Nanosystems: physics, chemistry, mathematics. 2021. Vol. 12, N3. Р. 368–403.
- Romanovski V., Klyndyuk A., Kamarou M. Green approach for low-energy direct synthesis? of anhydrite from industrial wastes of lime mud and spent sulfuric acid // Journal of Environmental Chemical Engineering, 2021. Vol. 9. P 106711.
- Klyndyuk A.I., Chizhova E.A., Shevchenko S.V. Spin-state transition in the layered barium cobaltite derivatives and their thermoelectric properties // Chimica Techno Acta. 2020. V. 7. N.?1. P. 26–33.
- Klyndyuk A.I., Khort A.A. Thermophysical Properties of Solid Solutions of Bi1–xNdxFe1–xMnxO3 at High Temperatures // HighTemperature.? 2019.? V.?57.? No. 2. – P. 186–189
- Klyndyuk A.I., Chizhova E.A. Structure and Properties of Solid Solutions of La1-xPrxBaCoFeO5+d // Glass Physics and Chemistry. 2012. V. 38. N 2. P. 234–239.
- Klyndyuk A.I. Structure, Thermal Expansion and Electrical Properties of the PrBaMCoO5+d (M – Cu, Fe) Layered Oxides // Inorganic Materials. 2009.? Vol. 45.? No. 8.? P. 942–945.
- Klyndyuk A.I., Chizhova Ye.A. Thermoelectric properties of the layered oxides LnBaCu(Co)FeO5+d // Functional Materials. 2009. V. 16. N 1. P. 17-22.
- Klyndyuk A.I. New Perovskite Oxides LaBaMCoO5+d (M = Fe, Cu): Synthesis, Structure and Properties // Physics of the Solid State. 2009.? Vol. 51. No. 2. – P. 270–271.
- Klyndyuk A.I. Effect of Oxygen Nonstoichiometry on the Thermal and Electrophysical Properties of Layered Ferrocuprates LnBaCuFeO5+d(Ln = La, Pr, 0???d???0.48) // Physics of Solid State. 2008.? Vol. 50.? Iss. 4.? P. 609–614.
- Chizhova E. A., Klyndyuk A. I., Bashkirov L. A., Petrov G. S., Yanushkevich K. I Structure and Properties of Solid Solutions in the System YBaCuFeO5–YBaCuCoO5 // Russian Journal of Applied Chemistry. 2005. Vol. 78. N 5. P. 702–706.
- Chizhova E. A., Klyndyuk A. I., Bashkirov L. A., Petrov G. S.,? Makhnach L. V. Properties of YBaCuFe1– xNixO5 (0???x???0.3) Solid Solutions // Inorganic Materials. 2004. Vol.40. N 12. P. 1331–1335.
- Petrov G.S., Clyndyuck A.I., Massyuck S.V., Bashkirov L.A., Akimov A.I. Thermal expansion and electric conductivity of some high-temperature superconductor solid solutions of 123 type // High Temperature – High Pressure. – 1998. – V. 30. –. No. 4. – P. 483–488.
- Clyndyuck A.I., Petrov G.S., Bashkirov L.A., Poluyan A.F., Savitsky A.A., Tichonova L.A. Physicochemical properties of some complex oxides related to the high-temperature superconductors // High Temperature – High Pressure. 1998. Vol. 30.? No. 4. P. 489–492
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