1. Синтез карбида и диборида титана для металлообработки и получения керамики

    Krutskii, Y., Maksimovskii, E., Petrov, R., Netskina, O., Ukhina, A., Krutskaya, T. & Gudyma, T., 2021, In: Obrabotka metallov-Metal working and material science. 23, 4, p. 155-166 12 p., 11.

    Research output: Contribution to journalArticlepeer-review

  2. Синтез высокодисперсного диборида хрома с использованием нановолокнистого углерода

    Krutskii, Y. L., Dyukova, K. D., Kuz’min, R. I., Netskina, O. V. & Iorkh, A. E., 1 Jan 2018, In: Izvestiya Ferrous Metallurgy. 61, 10, p. 800-806 7 p., 8.

    Research output: Contribution to journalArticlepeer-review

  3. Дибориды некоторых переходных металлов: свойства, области применения и методы получения. Часть 1. Дибориды титана и ванадия (обзор)

    Krutskii, Y. L., Cherkasova, N. Y., Gudyma, T. S., Netskina, O. V. & Krutskaya, T. M., Feb 2021, In: Izvestiya Ferrous Metallurgy. 64, 2, p. 149-164 16 p., 9.

    Research output: Contribution to journalArticlepeer-review

  4. The Use of Hybrid Genetic Algorithm in the Kinetic Analysis of Thermal Decomposition of [Ni(C2H8N2)3](ClO4)2 with Overlapping Stages

    Dmitruk, K. A., Komova, O. V., Paletsky, A. A., Shmakov, A. G., Mukha, S. A., Butenko, V. R., Pochtar, A. A. & Netskina, O. V., Jan 2023, In: Materials. 16, 1, 30.

    Research output: Contribution to journalArticlepeer-review

  5. The key role of oxide phases covering dispersed metals in their catalytic activity and stability in hydrolysis of boron-containing hydrides

    Komova, O. V., Ozerova, A. M., Rudneva, Y. V., Simagina, V. I., Lipatnikova, I. L., Rogov, V. A., Prosvirin, I. P. & Netskina, O. V., 20 Mar 2025, In: International Journal of Hydrogen Energy. 111, p. 361-370 10 p.

    Research output: Contribution to journalArticlepeer-review

  6. The effect of storage-induced changes in ammonia borane on hydrogen release during its low-temperature thermolysis

    Komova, O. V., Netskina, O. V., Ozerova, A. M., Odegova, G. V., Arzumanov, S. S. & Simagina, V. I., Aug 2019, In: Inorganics. 7, 8, 10 p., 96.

    Research output: Contribution to journalArticlepeer-review

  7. The Adsorption of 2,4-Dichlorobenzoic Acid on Carbon Nanofibers Produced by Catalytic Pyrolysis of Trichloroethylene and Acetonitrile

    Ozerova, A. M., Tayban, E. S., Lipatnikova, I. L., Potylitsyna, A. R., Bauman, Y. I., Prosvirin, I. P., Shubin, Y. V., Vedyagin, A. A., Mishakov, I. V. & Netskina, O. V., Dec 2023, In: C-Journal of Carbon Research. 9, 4, 98.

    Research output: Contribution to journalArticlepeer-review

  8. Synthesis of β-SiC Using Nanofibrous Carbon

    Krutskii, Y. L., Gudyma, T. S., Aparnev, A. I., Loginov, A. V., Krutskaya, T. M., Ukhina, A. V., Cherkasova, N. Y., Netskina, O. V. & Maximovskiy, E. A., 24 Mar 2024, In: Nanobiotechnology reports. 19, Suppl 1, p. S138-S145 18 p.

    Research output: Contribution to journalArticlepeer-review

  9. Synthesis of Highly Dispersed Zirconium Diboride for Fabrication of Special-Purpose Ceramic

    Krutskii, Y. L., Maksimovskii, E. A., Popov, M. V., Netskina, O. V., Krutskaya, T. M., Cherkasova, N. Y., Kvashina, T. S. & Drobyaz, E. A., 1 Oct 2017, In: Russian Journal of Applied Chemistry. 90, 10, p. 1579-1585 7 p.

    Research output: Contribution to journalArticlepeer-review

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