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  2. Isostructurality and Thermal Properties in the Series of Double Complex Salts [M 1(NH3)6][M 2(C2O4)3]·3H2O (M 1 = Co, Ir, M 2 = Fe, Cr)

    Yusenko, K. V., Pechenyuk, S. I., Vikulova, E. S., Semushina, Y. P., Baidina, I. A. & Filatov, E. Y., 1 Jul 2019, In: Journal of Structural Chemistry. 60, 7, p. 1062-1071 10 p.

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  3. Low-temperature catalytic CO oxidation over mixed silver-copper oxide Ag2Cu2O3

    Svintsitskiy, D. A., Slavinskaya, E. M., Kardash, T. Y., Avdeev, V. I., Senkovskiy, B. V., Koscheev, S. V. & Boronin, A. I., 25 Jan 2016, In: Applied Catalysis A: General. 510, p. 64-73 10 p.

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  4. Low-temperature CO oxidation by Pd/CeO2 catalysts synthesized using the coprecipitation method

    Slavinskaya, E. M., Gulyaev, R. V., Zadesenets, A. V., Stonkus, O. A., Zaikovskii, V. I., Shubin, Y. V., Korenev, S. V. & Boronin, A. I., 1 May 2015, In: Applied Catalysis B: Environmental. 166-167, p. 91-103 13 p.

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  5. Metal-support interaction in Pd/CeO2 model catalysts for CO oxidation: From pulsed laser-ablated nanoparticles to highly active state of the catalyst

    Slavinskaya, E. M., Kardash, T. Y., Stonkus, O. A., Gulyaev, R. V., Lapin, I. N., Svetlichnyi, V. A. & Boronin, A. I., 2016, In: Catalysis Science and Technology. 6, 17, p. 6650-6666 17 p.

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  6. Microwave assisted synthesis of CuS-reduced graphene oxide nanocomposite with efficient photocatalytic activity towards azo dye degradation

    Borthakur, P., Boruah, P. K., Darabdhara, G., Sengupta, P., Das, M. R., Boronin, A. I., Kibis, L. S., Kozlova, M. N. & Fedorov, V. E., 1 Dec 2016, In: Journal of Environmental Chemical Engineering. 4, 4, p. 4600-4611 12 p.

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  7. Mixed silver-nickel oxide AgNiO2: Probing by CO during XPS study

    Svintsitskiy, D. A., Lazarev, M. K., Kardash, T. Y., Fedorova, E. A., Slavinskaya, E. M. & Boronin, A. I., 31 Jan 2020, In: Journal of Chemical Physics. 152, 4, 8 p., 044707.

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  8. NAP-XPS and in situ XRD study of the stability of Bi-modified MoVNbTeO catalysts for oxidative dehydrogenation of ethane

    Svintsitskiy, D. A., Kardash, T. Y., Lazareva, E. V., Saraev, A. A., Derevyannikova, E. A., Vorokhta, M., Šmíd, B. & Bondareva, V. M., 5 Jun 2019, In: Applied Catalysis A: General. 579, p. 141-150 10 p.

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  9. Nature of active palladium sites on nitrogen doped carbon nanofibers in selective hydrogenation of acetylene

    Chesnokov, V. V., Kriventsov, V. V., Malykhin, S. E., Svintsitskiy, D. A., Podyacheva, O. Y., Lisitsyn, A. S. & Richards, R. M., 1 Oct 2018, In: Diamond and Related Materials. 89, p. 67-73 7 p.

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  10. NiCuMo-SiO2 catalyst for pyrolysis oil upgrading: Model acidic treatment study

    Alekseeva (Bykova), M. V., Otyuskaya, D. S., Rekhtina, M. A., Bulavchenko, O. A., Stonkus, O., Kaichev, V. V., Zavarukhin, S. G., Thybaut, J. W., Alexiadis, V., Venderbosch, R. H. & Yakovlev, V., 5 Mar 2019, In: Applied Catalysis A: General. 573, p. 1-12 12 p.

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  11. Nitrogen doped carbon nanotubes and nanofibers: Composition, structure, electrical conductivity and capacity properties

    Podyacheva, O. Y., Cherepanova, S. V., Romanenko, A. I., Kibis, L. S., Svintsitskiy, D. A., Boronin, A. I., Stonkus, O. A., Suboch, A. N., Puzynin, A. V. & Ismagilov, Z. R., 1 Oct 2017, In: Carbon. 122, p. 475-483 9 p.

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