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Issue | Title | |
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 | ||
"... (XRD, TEM, H2-TPR). Catalysts have been investigated in a modern process – chemical looping methane dry ..." | ||
Vol 7, No 3 (2016) | Chemically treated multi-walled carbon nanotubes for sensor applications | Abstract PDF (Eng) similar documents |
Khurshed A. Shah | ||
"... to investigate the structural and chemical changes in them and to use them for sensor applications. Raman ..." | ||
Vol 7, No 1 (2016): Special Issue: Proceedings of the 12th Biennial International Conference “Advanced Carbon Nanostructures” (ACNS’2015) | Quantum-chemical study of carbon nanotubes interaction with contaminants of petroleum, oil and lubricants | Abstract PDF (Eng) similar documents |
I. Arkharova, I. Zaporotskova | ||
Vol 15, No 1 (2024) | Synthesis of strontium fluoride nanoparticles in a microreactor with intensely swirling flows | Abstract PDF (Eng) similar documents |
R. Sh. Abiev, A. V. Zdravkov, Yu. S. Kudryashova, A. A. Alexandrov, S. V. Kuznetsov, P. P. Fedorov | ||
"... with intensely swirling flows. The chemical reaction between aqueous solutions of strontium nitrate (C(Sr(NO3)2 ..." | ||
Vol 11, No 6 (2020) | The novel polyindole based ZnO/MgO nanocomposite adsorbent for the removal of heavy metal ions from industrial effluents | Abstract PDF (Eng) similar documents |
Dedhila Devadathan, V. Baiju, J. P. Deepa, R. aveendran | ||
"... , polyindole and the polyindole based ZnO/MgO nanocomposite were synthesized using chemical oxidation method ..." | ||
Vol 6, No 5 (2015) | Nano-ZnS thin films for solar cell | Abstract PDF (Eng) similar documents |
M. A. Jafarov, E. F. Nasirov, S. A. Jahangirova, R. Jafarli | ||
"... periods ranging from 30 to 120 min by chemical bath deposition technique. Other parameters ..." | ||
Vol 8, No 6 (2017) | Generation of laser radiation by nanostructured solid active elements with selective optical nanoresonators formed in nanoporous aluminum oxide films | Abstract PDF (Eng) similar documents |
G. A. Lyubas | ||
"... of a spontaneous component. Chemical deposition of noble metals leads to the formation of internal nanoresonator ..." | ||
Vol 14, No 6 (2023) | Surface topology, electrophysical properties and formation mechanism of tin(ii) sulfide thin films | Abstract PDF (Eng) similar documents |
N. S. Kozhevnikova, L. N. Maskaeva, A. N. Enyashin, A. P. Tyutyunnik, O. A. Lipina, I. O. Selyanin, V. F. Markov | ||
"... 30 nm were obtained by chemical bath deposition. It has been demonstrated that the deposition time ..." | ||
Vol 11, No 5 (2020) | Computational analysis of some degree based topological indices of cubic structured tungsten trioxide [l,m,n] nanomultilayer | Abstract PDF (Eng) similar documents |
M. S. Duraisami, K. Parasuraman | ||
"... the physicochemical properties of chemical compounds. In this view, a topological index can be considered as a score ..." | ||
Vol 12, No 3 (2021) | Investigation of the effect of zinc precursors onto structural, optical and electrical properties of CBD deposited ZnS thin films | Abstract PDF (Eng) similar documents |
R. P. Khatri, A. J. Patel | ||
"... -effective chemical bath deposition (CBD) method. The optimized bath parameters were: 25 ml of 0.1 M zinc ..." | ||
Vol 7, No 4 (2016) | Dielectric studies of nanocrystalline calcium tungstate | Abstract PDF (Eng) similar documents |
N. Aloysius, M. S. Rintu, E. M. Muhammed, T. Varghese | ||
"... Nanocrystalline samples of CaWO4 were prepared at room temperature by simple chemical ..." | ||
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 | ||
Vol 3, No 5 (2012) | Ceramic and composite nanomaterials based on calcium orthophosphates | Abstract similar documents |
A. A. Afonko, S. A. Kirillova, V. I. Almjashev | ||
Vol 5, No 1 (2014) | The state-of-the-art science and applications of carbon nanotubes | Abstract PDF (Eng) similar documents |
K. Takeuchi, T. Hayashi, Y. A. Kim, K. Fujisawa, M. Endo | ||
"... Extra-ordinary chemical and physical properties of carbon nanotubes (CNTs) also the success ..." | ||
Vol 5, No 2 (2014) | Effect of the mild method of formation VxOy/InP structures using V2O5 gel on the process of their oxidation and composition of nanosized oxide films | Abstract PDF (Eng) similar documents |
I. A. Mittova, E. V. Tomina, B. V. Sladkopevtcev | ||
"... associated with the chemical bonding of V2O5 into InVO4 (XRD), which predominates over mutual transformations ..." | ||
Vol 9, No 1 (2018) | The growth temperature effect on vertically aligned carbon nanotubes parameters | Abstract PDF (Eng) similar documents |
O. I. Il’in, M. V. Il’ina, N. N. Rudyk, A. A. Fedotov, O. A. Ageev | ||
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 | ||
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 | ||
"... chemical synthesis of a mechanical mixture of titanium carbonitride TiC0.5N0.5 with metallic nickel ..." | ||
Vol 14, No 1 (2023) | Plasma-chemical synthesis of nanocrystalline “core-shell” structures TiN–Mo–Co | Abstract PDF (Eng) similar documents |
Yu. A. Avdeeva, I. V. Luzhkova, A. M. Murzakaev, A. N. Ermakov | ||
"... with participation of Mo and Co under conditions of plasma-chemical synthesis have been studied. Synthesis ..." | ||
Vol 11, No 5 (2020) | A facile low-temperature deposition of Sn-rich tin (II) monosulfide colloid particles | Abstract PDF (Eng) similar documents |
N. S. Kozhevnikova, L. N. Maskaeva, E. E. Lekomtseva, L. A. Pasechnik, A. Yu. Chufarov, O. A. Lipina, A. N. Enyashin, V. F. Markov | ||
"... is described. Chemical bath deposition was successfully applied for the deposition of polynanocrystalline SnS ..." | ||
Vol 11, No 6 (2020) | Dependence of the electronic and crystal structure of a functionalized graphene on the concentration of chemically adsorbed fluorine | Abstract PDF (Eng) similar documents |
M. E. Belenkov, V. M. Chernov | ||
Vol 5, No 4 (2014) | A facile route of coupling of ZnO nanorods by CdS nanoparticles using chemical bath deposition | Abstract PDF (Eng) similar documents |
N. S. Kozhevnikova, O. I. Gyrdasova, A. S. Vorokh, I. V. Baklanova, L. Yu. Buldakova | ||
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 4, No 5 (2013) | Nanoscale structures based on the Zn1-xCdxS | Abstract PDF (Eng) similar documents |
M. A. Jafarov, E. F. Nasirov | ||
Vol 9, No 5 (2018) | Synthesis and quantum yield investigations of the Sr1−x−yPrxYbyF2+x+y luminophores for photonics | Abstract PDF (Eng) similar documents |
S. V. Kuznetsov, V. Yu. Proydakova, O. A. Morozov, V. G. Gorieva, M. A. Marisov, V. V. Voronov, A. D. Yapryntsev, V. K. Ivanov, A. S. Nizamutdinov, V. V. Semashko, P. P. Fedorov | ||
Vol 5, No 5 (2014) | Controlled interference color of the metal surface by combination of the chemical and electrochemical aluminum surface treatment | Abstract PDF (Eng) similar documents |
V. V. Shelkovnikov, G. A. Lyubas, S. V. Korotaev | ||
"... The method of the electrochemical and chemical treatment of an aluminum surface to obtain ..." | ||
Vol 3, No 3 (2012) | Electrochemical methods of synthesis of hyperbolic metamaterials | Abstract similar documents |
A. V. Atrashchenko, A. A. Krasilin, I. S. Kuchuk, E. M. Aryslanova, S. A. Chivilikhin, P. A. Belov | ||
Vol 2, No 4 (2011) | Numerical simulation of formation of the titan dioxide in the plasma-chemical reactor of flowing-type | Abstract similar documents |
S. M. Aulchenko, E. V. Kartaev, O. B. Kovalev | ||
"... in a working zone of the plasma-chemical reactor are presented. Influence of heterogeneous reaction ..." | ||
Vol 9, No 2 (2018) | Ca1-x-yYbxPryF2+x+y solid solution powders as a promising materials for crystalline silicon solar energetics | Abstract PDF (Eng) similar documents |
S. V. Kuznetsov, O. A. Morozov, V. G. Gorieva, M. N. Mayakova, M. A. Marisov, V. V. Voronov, A. D. Yapryntsev, V. K. Ivanov, E. I. Madirov, A. S. Nizamutdinov, V. V. Semashko, P. P. Fedorov | ||
Vol 9, No 6 (2018) | Influence of cadmium acetate salt concentration on the composition, structure and morphology of CdxPb1−xS solid soluton films | Abstract PDF (Eng) similar documents |
I. V. Vaganova, L. N. Maskaeva, V. F. Markov, V. I. Voronin, V. G. Bamburov | ||
"... structure based on lead sulfide cubic lattice were produced by chemical bath co-deposition of CdS and PbS ..." | ||
Vol 5, No 1 (2014) | Topological mechanochemistry of graphene | Abstract PDF (Eng) similar documents |
E. F. Sheka, V. A. Popova, N. A. Popova | ||
"... are attributed to both mechanical loading and chemical modification of the edge atoms of the molecule ..." | ||
Vol 3, No 6 (2012) | Research of chemical synthesis of nanoparticles of gold and color transformations accompanying it | Abstract similar documents |
A. V. Panteleev, D. N. Vavulin, A. V. Alfimov, O. V. Andreeva, E. M. Aryslanova, S. A. Chivilikhin | ||
"... In this work the method of chemical synthesis of colloidal gold is investigated, original ..." | ||
Vol 9, No 1 (2018) | Hemisorption of hydrogen on the diamond surface containing a “boron + vacancy” defect | Abstract PDF (Eng) similar documents |
O. Yu. Ananina, O. V. Ponomarev, A. I. Ryazanova, N. A. Lvova | ||
"... In this paper, we present the results of quantum-chemical modeling for atomic hydrogen adsorption ..." | ||
Vol 11, No 2 (2020) | Synthesis and characterisation of CZTSe bulk materials for thermoelectric applications | Abstract PDF (Eng) similar documents |
Yogeshchandra Sharma | ||
"... . XPS analysis reveals constituent atoms display chemical valences of +1, +2, +4, and −1 for Cu, Zn, Sn ..." | ||
Vol 14, No 2 (2023) | Colloidal-chemical mechanism of Zn(OH)2–ZnO layer formation at the glass– ammonia solution– Zn(II) interface | Abstract PDF (Eng) similar documents |
E. V. Polyakov, M. A. Maksimova, J. V. Kuznetsova, L. Yu. Buldakova | ||
"... of zinc oxide nanoparticles and films by chemical bath deposition (CBD) methods, were carried out ..." | ||
Vol 7, No 6 (2016) | High-temperature superconductivity: From macro- to nanoscale structures | Abstract PDF (Eng) similar documents |
A. N. Kovalenko | ||
"... the preservation of superconductivity of individual nanoparticles, their chemical, thermal, magnetic and current ..." | ||
Vol 5, No 5 (2014) | Nanoscale reduced-graphene-oxide origin of shungite in light of neutron scattering | Abstract PDF (Eng) similar documents |
E. F. Sheka, N. N. Rozhkova, K. Hołderna-Natkaniec, I. Natkaniec | ||
"... scattering have left no doubts concerning both graphene-like configuration and chemical composition of basic ..." | ||
Vol 5, No 1 (2014) | Sensor properties of carboxyl-modifies carbon nanotubes | Abstract PDF (Eng) similar documents |
N. P. Polikarpova, I. V. Zaporotskova, D. E. Vilkeeva, D. I. Polikarpov | ||
"... carboxyl group chemical activity is defined. The research is performed by the MNDO method within ..." | ||
Vol 9, No 5 (2018) | Thermodynamics and kinetics of non-autonomous phase formation in nanostructured materials with variable functional properties | Abstract similar documents |
A. N. Kovalenko, E. A. Tugova | ||
"... The review addresses physico-chemical aspects of interaction between macro-, micro- and nano ..." | ||
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