| Issue | Title | |
| Vol 16, No 6 (2025) | The relationship between the impregnation solution composition and the active component distribution NiMo/ZSM-23 catalysts for the plant lipids hydroprocessing | Abstract PDF (Eng) similar documents |
| K. S. Kovalevskaya, R. G. Kukushkin, O. O. Zaikina, O. A. Bulavchenko, V. A. Yakovlev | ||
| "... solutions leads to the formation of phases NiO, α-NiMoO4 and β-NiMoO4. In the case of using aqueous ..." | ||
| Vol 15, No 6 (2024) | Granular Ni–Mo–W bulk hydrotreating catalyst: the effects from precursor calcination | Abstract PDF (Eng) similar documents |
| K. A. Nadeina, Yu. V. Vatutina, P. P. Mukhacheva, S. V. Budukva, I. G. Danilova, V. P. Pakharukova, E. Yu. Gerasimov, M. A. Panafidin, O. V. Klimov | ||
| "... sulfides and interact with alumina binder to form “NiMoS-like” sulfide phase. Increased crystallinity ..." | ||
| Vol 12, No 6 (2021) | Review on NiO thin film as hole transport layer in perovskite solar cell | Abstract PDF (Eng) similar documents |
| Kamal Bhujel, Suman Rai, Ningthoujam Surajkumar Singh | ||
| "... and the life time of the PSCs. Later it was replaced mostly by NiO, a p-type transparent conducting oxide (TCO ..." | ||
| Vol 10, No 6 (2019) | SILD synthesis of the efficient and stable electrocatalyst based on CoO–NiO solid solution toward hydrogen production | Abstract PDF (Eng) similar documents |
| I. A. Kodintsev, K. D. Martinson, A. A. Lobinsky, V. I. Popkov | ||
| "... Currently, nanocrystalline NiO is well known as one of the best non-noble metal electrode material ..." | ||
| Vol 15, No 6 (2024) | Effect of synthesis method on the structural, conductive and sensor properties of NiO–In2O3 nanocomposites | Abstract PDF (Eng) similar documents |
| M. I. Ikim, V. F. Gromov, G. N. Gerasimov, V. G. Bekeshev, L. I. Trakhtenberg | ||
| "... The structural, conductive and sensor properties of NiO–In2O3 composites synthesized ..." | ||
| Vol 12, No 3 (2021) | Catalytic fullerenol action on Chlorella growth in the conditions of limited resource base and in the conditions of oxidation stress | Abstract PDF (Eng) similar documents |
| L. V. Gerasimova, N. A. Charykov, K. N. Semenov, V. A. Keskinov, A. V. Kurilenko, Zh. K. Shaimardanov, B. K. Shaimardanova, N. A. Kulenova, D. G. Letenko, Ayat Kanbar | ||
| "... температуре при освещении стандартной лампой накаливания в течение 9 дней. Концентрацию катализатора ..." | ||
| Vol 15, No 2 (2024) | Green approach to production of porous char adsorbents via oxidative carbonization in fluidized catalyst bed | Abstract PDF (Eng) similar documents |
| P. M. Yeletsky, N. A. Yazykov, Yu. V. Dubinin, M. M. Borodaevskiy, S. A. Selishcheva, V. A. Yakovlev | ||
| "... катализатора глубокого окисления при пониженных температурах (465 – 600 °С). Данный подход позволяет получать ..." | ||
| Vol 11, No 2 (2020) | Synthesis, characterization and concentration dependant antibacterial potentials of nickel oxide nanoparticles against Staphylococcus aureus and Escherichia coli | Abstract PDF (Eng) similar documents |
| V. Gupta, V. Kant, A. Gupta, M. Sharma | ||
| "... improved the potential of metal oxides in different applications. Metal oxides, of which, nickel oxide (NiO ..." | ||
| Vol 5, No 3 (2014) | Effect of calcination temperature on the structural and optical properties of nickel oxide nanoparticles | Abstract PDF (Eng) similar documents |
| P. A. Sheena, K. P. Priyanka, N. A. Sabu, B. Sabu, T Varghese | ||
| "... of nanocrystalline NiO. NiO nanoparticles were synthesized by chemical precipitation method using nickel nitrate ..." | ||
| Vol 16, No 4 (2025) | Pt/CeO2–ZrO2 catalyst for dimethyl ether and dimethoxymethane partial oxidation to syngas: in-situ Raman spectroscopy structural studies | Abstract PDF (Eng) similar documents |
| G. M. Korableva, D. A. Agarkov, S. D. Badmaev, D. S. Katrich, A. V. Samoilov, P. V. Snytnikov, I. I. Tartakovskii, S. I. Bredikhin | ||
| "... многокомпонентном катализаторе состава 1,9 мас.% Pt-Ce0,75Zr0,25O2 (Pt/CZ) с использованием in-situ спектроскопии ..." | ||
| Vol 3, No 6 (2012) | Thermostable catalysts for oxidation of hydrogen based on ZrO2-Al2O3 nanocomposite | Abstract similar documents |
| O. V. Almjasheva, A. Yu. Postnov, N. V. Maltseva, E. A. Vlasov | ||
| "... данный катализатор соответствует лучшим промышленным Pt/Pd катализаторам окисления водорода, а по ряду ..." | ||
| Vol 16, No 1 (2025) | Nickel-copper-containing alloy catalysts for furfural hydroconversion: the influence of composition and physicochemical features on the distribution of reaction products in various modes | Abstract PDF (Eng) similar documents |
| A. A. Sumina, S. A. Selishcheva, O. A. Bulavchenko, V. A. Yakovle | ||
| "... Сплавные никель-медьсодержащие катализаторы с различным содержанием оксида никеля были ..." | ||
| Vol 15, No 6 (2024) | Chemical looping methane dry reforming over Ni-containing modified ceria-zirconia | Abstract PDF (Eng) similar documents |
| E. Smal, V. Fedorova, K. Valeev, A. Hassan, E. Gerasimov, M. Simonov | ||
| "... физико-химических методов (РФА, ПЭМ, H2-ТПВ). Катализаторы были испытаны в современном процессе ..." | ||
| Vol 16, No 4 (2025) | Self-cleaning nanocomposite membranes based on sulfonated tetrafluoroethylene and g-C3N4 for water purification | Abstract PDF (Eng) similar documents |
| M. I. Chebanenko, L. A. Lebedev, M. I. Tenevich, K. D. Martinson, O. N. Primachenko, S. V. Kononova, V. I. Popkov | ||
| Vol 16, No 1 (2025) | Design of highly active NixCo1-xAl2O4 (x = 0:1 – 0:5) catalysts for the dry reforming of methane reaction | Abstract PDF (Eng) similar documents |
| A. A. Shutilov, M. N. Simonov, V. E. Fedorova, A. S. Marchuk, I. P. Prosvirin, G. A. Zenkovets | ||
| "... воздухе приводит к формированию предшественников катализаторов реакции углекислотной конверсии метана (УКМ ..." | ||
| Vol 14, No 6 (2023) | Effect of triethanolamine and sodium hydroxide concentration on the activity of Pt/g- C3N4 catalyst in the reaction of photocatalytic hydrogen evolution under visible light irradiation | Abstract PDF (Eng) similar documents |
| K. O. Potapenko, E. A. Kozlova | ||
| "... протекания процесса выделения водорода. Показано, что в таких условиях катализатор является стабильным ..." | ||
| Vol 4, No 1 (2013) | Sulfated alumina in the oligomerization reaction of hexene-1and cyclohexene | Abstract similar documents |
| S. A. Lermontov, A. N. Malkova, L. L. Yurkova, V. P. Kazachenko, V. K. Ivanov, A. E. Baranchikov, Yu. D. Tretyakov | ||
| "... Изучена олигомеризация гексена-1 и циклогексена над твердыми суперкислотными катализаторами ..." | ||
| Vol 15, No 4 (2024) | Formation of ultra- and nanodis- persed “core-shell” structures Ti0.8Mo0.2C0.5N0.5–Ni–Mo in the process of plasma-chemical synthesis of a mechanical mixture of titanium carbonitride with metallic nickel and molybdenum | Abstract PDF (Eng) similar documents |
| Yu. A. Avdeeva, I. V. Luzhkova, A. M. Murzakaev, A. N. Ermakov | ||
| "... , NiO, TiO2, MoC0.5N0.5. The experimental data on measurements of the specific surface area by the BET ..." | ||
| Vol 16, No 6 (2025) | MXene based electrocatalysts for efficient water splitting | Abstract PDF (Eng) similar documents |
| J. Mamanazirov, Sh. Mamatkulov, M. Jumayeva, Kh. Butanov, Wen He, Jingxiang Low, Odilhuja Parpiev, Olim Ruzimuradov | ||
| "... катализаторов на основе MXene для расщепления воды. Катализатор на основе MXene продемонстрировал превосходную ..." | ||
| Vol 3, No 2 (2012) | The catalytic action of vanadium and its oxide (V) in the oxidation processes of AIIIBV semiconductors | Abstract similar documents |
| I. Ya. Mittova, E. V. Tomina, A. A. Lapenko, B. V. Sladkopevtcev | ||
| "... количества нанесённого катализатора. Термооксидирование InP в присутствии наноостровков V2O5 на начальном ..." | ||
| Vol 16, No 5 (2025) | Incorporating manganese selenide with polymerized reduced carbon sheets: an efficient and stable electro-catalyst for methanol oxidation | Abstract PDF (Eng) similar documents |
| M. Kavitha, S. Kalaiarasi, C. Vedhi, R. R. Muthuchudarkodi | ||
| "... сравнению с монометаллическим катализатором. Данное исследование обосновывает потенциальную разработку ..." | ||
| Vol 14, No 6 (2023) | Alumina and silica supported Ce–Fe–O systems obtained by the solution combustion method and their performance in CO2 hydrogenation to syngas | Abstract PDF (Eng) similar documents |
| A. N. Matveyeva, Sh. O. Omarov, M. A. Gavrilova | ||
| "... катализаторами для производства топлива и химикатов из CO2. Синтез проводился методом растворного горения при ..." | ||
| 1 - 22 of 22 Items | ||
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