| Issue | Title | |
| Vol 2, No 3 (2011) | Thermal expansion coefficient for copper nanoclusters by molecular-dynamic method | Abstract similar documents |
| E. I Golovneva, I. F. Golovnev, V. M. Fomin | ||
| "... coefficient (TLC) for copper nanoclusters of spherical and cubic shapes in the wide range of size ..." | ||
| Vol 15, No 3 (2024) | Preparation, structure and magnetic properties of the nanostructural Ni@C films obtained by magnetron deposition | Abstract PDF (Eng) similar documents |
| R. V. Shalayev, V. N. Varyukhin, A. I. Linnik, V. V. Syrotkin, S. A. Kostyrya | ||
| Vol 13, No 6 (2022) | Multi-order and structural mechanism of atom nanocluster formation in rhombohedral Cu-Zr-thiospinels | Abstract PDF (Eng) similar documents |
| V. M. Talanov, M. V. Talanov | ||
| "... A structural mechanism for the formation of nanoclusters and the rhombohedral modification of CuZr ..." | ||
| Vol 2, No 4 (2011) | Simulation of flows in nanochannels by the molecular dynamics method | Abstract similar documents |
| V. Ya. Rudyak, A. A. Belkin, V. V. Egorov, D. A. Ivanov | ||
| Vol 8, No 6 (2017) | Nanocluster structure deduced from AC-STEM images coupled to theoretical modelling | Abstract PDF (Eng) similar documents |
| K. Sukuta, M. Van den Bossche, A. Pedersen, H. Jónsson | ||
| "... Determining the atomic structure of nanoclusters is a challenging task and a critical one ..." | ||
| Vol 8, No 6 (2017) | Role of carbon in the formation of the structure and magnetic properties of Ni@CNx nanoclusters under reactive magnetron deposition | Abstract PDF (Eng) similar documents |
| R. V. Shalayev, V. N. Varyukhin, A. M. Prudnikov, A. I. Linnik, V. V. Syrotkin | ||
| "... to form the Ni@CNx nanoclusters type “core-shell”, where metallic nickel is the core and carbon nitride ..." | ||
| Vol 9, No 1 (2018) | Ion sputtering of nanoclusters, fullerenes and carbon nanotubes | Abstract PDF (Eng) similar documents |
| S. N. Kapustin, M. K. Eseev | ||
| Vol 10, No 3 (2019) | The use of nanocluster polyoxometalates in the bioactive substance delivery systems | Abstract PDF (Eng) similar documents |
| A. A. Ostroushko, I. D. Gagarin, I. G. Danilova, I. F. Gette | ||
| "... delivery. Such vehicles are considered in this review. Attention is paid to the nanocluster polyoxometalate ..." | ||
| Vol 6, No 3 (2015) | Atomic order and metallic nanoclusters in Na4Ir3O8 | Abstract PDF (Eng) similar documents |
| M. V. Talanov, V. B. Shirokov, V. M. Talanov | ||
| "... A theory for forming Ir-atomic nanoclusters in a dielectric matrix of Na4Ir3O8 structure ..." | ||
| Vol 5, No 1 (2014) | Carbon encapsulation of magnetic metal nanoparticles: correlation between nanoscale structure of carbon matrix and electromagnetic properties | Abstract PDF (Eng) similar documents |
| S. V. Kozyrev, V. I. Ivanov-Omskii, S. G. Yastrebov, T. K. Zvonareva, M. S. Chekulaev, A. V. Siklitskaya | ||
| Vol 6, No 5 (2015) | Encapsulation of iron atoms between framgments of graphene planes | Abstract PDF (Eng) similar documents |
| A. V. Siklitskaya, V. I. Ivanov-Omskii, M. S. Chekulaev, S. G. Yastrebov, R. Smith, A. Slav, C. Morosanu, S. V. Kozyrev | ||
| Vol 7, No 5 (2016) | Computer simulation of periodic nanostructures | Abstract PDF (Eng) similar documents |
| E. N. Grishanov, I. Y. Popov | ||
| "... An algorithm and code for spectrum calculation for periodic nanostructures in homogeneous magnetic ..." | ||
| Vol 1, No 1 (2010) | Evolutionary approach to nanostructures formation | Abstract similar documents |
| I. V. Melikhov | ||
| Vol 11, No 1 (2020) | Topological properties of some nanostructures | Abstract PDF (Eng) similar documents |
| S. Mondal, A. Bhosale, N. De, A. Pal | ||
| Vol 11, No 1 (2020) | Geometrical analyses of nanostructures | Abstract PDF (Eng) similar documents |
| V. Sajfert, N. Pop, D. Popov | ||
| "... of nanostructures as thin film or quantum rods. ..." | ||
| Vol 14, No 2 (2023) | Features of Ca1-xYxF2+x solid solution heat capacity behavior: diffuse phase transition | Abstract PDF (Eng) similar documents |
| A. A. Alexandrov, A. D. Rezaeva, V. A. Konyushkin, A. N. Nakladov, S. V. Kuznetsov, P. P. Fedorov | ||
| "... is associated with the reversible rearrangement of defect nanoclusters, which affects the change in the anion ..." | ||
| Vol 6, No 2 (2015) | Renyi entropy for the doped graphene at low temperatures | Abstract PDF (Eng) similar documents |
| N. N. Konobeeva, A. A. Polunina, M. B. Belonenko | ||
| Vol 2, No 3 (2011) | Planar flows in nanoscale regions | Abstract PDF (Eng) similar documents |
| S. A. Chivilikhin, I. Yu. Popov, V. V. Gusarov | ||
| Vol 3, No 3 (2012) | Single-particle potentials for adsorbents with spherical and cylindrical geometry | Abstract similar documents |
| V. V. Zubkov, I. V. Grinev, V. M. Samsonov | ||
| Vol 7, No 6 (2016) | Macroscopic thermoelectric efficiency of carbon nanocomposites | Abstract PDF (Eng) similar documents |
| E. D. Eidelman, A. P. Meilakhs | ||
| Vol 7, No 2 (2016): Special Issue | An interpretation of the strongest X-ray diffraction peak for various carbon nanoclusters | Abstract PDF (Eng) similar documents |
| A. V. Siklitskaya, S. G. Yastrebov, R. Smith | ||
| Vol 2, No 3 (2011) | The modeling of SiC phases on basis of nanostructures | Abstract similar documents |
| E. A. Belenkov, E. N. Agalyamova, V. A. Greshnyakov | ||
| "... of nanostructures was offered. The geometrically optimized structure of silicon carbide clusters was calculated ..." | ||
| Vol 13, No 6 (2022) | Features of tunneling current-voltage characteristics in dielectric films with Ni, Fe and Co nanoparticles, investigated by conductive AFM and within the framework of the theory of 1D-dissipative tunneling | Abstract PDF (Eng) similar documents |
| M. B. Semenov, V. D. Krevchik, D. O. Filatov, D. A. Antonov, A. V. Shorokhov, A. P. Shkurinov, I. A. Ozheredov, P. V. Krevchik, A. V. Razumov, A. S. Kotov, I. S. Antonov, I. M. Semenov | ||
| "... . In the process of synthesizing metallic nanoparticles with a change in polarity, instead of nanoclusters ..." | ||
| Vol 6, No 4 (2015) | The kinetics of formation and morphological memory of polymeric nanostructures | Abstract PDF (Eng) similar documents |
| I. V. Melikhov, O. V. Alekseeva, V. N. Rudin, E. D. Kozlovskaya, A. V. Noskov | ||
| "... body. According to this model, the near-surface nanostructure of the polymeric body retains ..." | ||
| Vol 3, No 1 (2012) | Flows in nanostructures: hybrid classical-quantum models | Abstract PDF (Eng) similar documents |
| S. A. Chivilikhin, V. V. Gusarov, I. Yu. Popov | ||
| Vol 10, No 1 (2019) | On the metric graph model for flows in tubular nanostructures | Abstract PDF (Eng) similar documents |
| M. O. Smolkina, I. Y. Popov, I. V. Blinova, E. Milakis | ||
| Vol 13, No 5 (2022) | Synthesis and optical properties of MnSe nanostructures: A review | Abstract PDF (Eng) similar documents |
| R. Sarma, M. Sarma, M. J. Kashyap | ||
| "... (wet chemical and deposition methods) of different MnSe nanostructures and their optical properties ..." | ||
| Vol 6, No 5 (2015) | Periodic chain of disks in a magnetic field: bulk states and edge states | Abstract PDF (Eng) similar documents |
| E. N. Grishanov, D. A. Eremin, D. A. Ivanov, I. Yu. Popov, P. I. Smirnov | ||
| Vol 8, No 5 (2017) | Revisiting preparation routes of SERS materials | Abstract PDF (Eng) similar documents |
| A. A. Semenova, I. A. Semenova, A. P. Semenov, E. A. Gudilina, E. A. Goodilin | ||
| "... preparation histories of consolidated silver nanoparticles and artificially prepared nanostructures to rate ..." | ||
| Vol 8, No 5 (2017) | Vapor phase SERS sensor based on mesoporous silica decorated with silver nanoparticles | Abstract PDF (Eng) similar documents |
| A. S. Sarycheva, A. A. Semenova, E. A. Goodilin | ||
| Vol 12, No 1 (2021) | Physicochemical and biochemical properties of the Keplerate-type nanocluster polyoxomolybdates as promising components for biomedical use | Abstract PDF (Eng) similar documents |
| A. A. Ostroushko, K. V. Grzhegorzhevskii, S. Yu. Medvedeva, I. F. Gette, M. O. Tonkushina, I. D. Gagarin, I. G. Danilova | ||
| "... of the Keplerate-type molybdenum-based nanocluster polyoxometalates (POMs), which show promise in the field ..." | ||
| Vol 4, No 1 (2013) | Synthesis and modification of zinc oxide nanostructures for conductometric immunosensor development | Abstract similar documents |
| M. A. Shiryaev, A. N. Baranov | ||
| "... In present paper zinc oxide nanostructure synthesis and modification for bioanalytical ..." | ||
| Vol 2, No 3 (2011) | Information and structures: modular design of nanostructures and the fractal structures into 2D space | Abstract similar documents |
| V. V. Ivanov, V. M. Talanov, V. V. Gusarov | ||
| Vol 1, No 1 (2010) | Principle of modular building of nanostructures: the information codes and the combinatorial design | Abstract similar documents |
| V. V. Ivanov, V. M. Talanov | ||
| Vol 7, No 3 (2016) | Effect of precipitating agent NaOH on the preparation of copper oxide nanostructures for electrochemical applications | Abstract PDF (Eng) similar documents |
| M. Balasubramaniam, S. Balakumar | ||
| "... Copper oxide (CuO) nanostructures with different concentrations of sodium hydroxide ..." | ||
| Vol 3, No 5 (2012) | Аbout mechanism of initial stage of formation of nanostructures in the conditions of super-low temperatures | Abstract similar documents |
| A. P. Belyaev, V. P. Rubets, V. V. Antipov, N. S. Bordei | ||
| Vol 3, No 5 (2012) | Method of the “imaginary boundary” in the study of the optical properties of ordered nanostructures | Abstract similar documents |
| A. S. Shalin, A. S. Kadochkin | ||
| "... (“imaginary boundary” method) to describe interaction of a light with an ordered nanostructure without ..." | ||
| Vol 11, No 3 (2020) | Hydrothermal synthesis of CeO2 nanostructures and their electrochemical properties | Abstract PDF (Eng) similar documents |
| A. N. Bugrov, V. K. Vorobiov, M. P. Sokolova, G. P. Kopitsa, S. A. Bolshakov, M. A. Smirnov | ||
| "... , and two temperature regimes (100 and 180 ◦C). The obtained CeO2 nanostructures were characterized using ..." | ||
| Vol 10, No 3 (2019) | Resonant dielectric waveguide-based nanostructure for efficient interaction with color centers in nanodiamonds | Abstract PDF (Eng) similar documents |
| O. N. Sergaeva, I. A. Volkov, R. S. Savelev | ||
| Vol 15, No 2 (2024) | A plasmonic turn-on insulin sensing platform on centimeter scale nanostructure arrays | Abstract PDF (Eng) similar documents |
| Thanh Thi Van Nguyen | ||
| "... . The large-scale nanostructures were fabricated by laser interference lithography technique. The detecting ..." | ||
| Vol 15, No 3 (2024) | Synthesis and study of nickel sulfide nanostructures for energy storage device applications | Abstract PDF (Eng) similar documents |
| M. M. Kamble, Bh. R. Bade, A. V. Rokade, V. S. Waman, S. V. Bangale, S. R. Jadkar | ||
| Vol 2, No 2 (2011) | Molecular dynamics investigation of deformation response of thin-film metallic nanostructures under heating | Abstract PDF (Eng) similar documents |
| I. S. Konovalenko, K. P. Zolnikov, S. G. Psakhie | ||
| "... Molecular dynamics simulation of nanostructure behavior under impulse heating is carried out ..." | ||
| Vol 4, No 4 (2013): Special Issue. INTERNATIONAL CONFERENCE "MATHEMATICAL CHALLENGE OF QUANTUM TRANSPORT IN NANOSYSTEMS - 2013. PIERRE DUCLOS WORKSHOP" | Application of Green’s function approach to electronic structure of carbon nanocylinders | Abstract PDF (Eng) similar documents |
| J. Smotlacha, R. Pincak | ||
| "... The local density of states of the carbon nanostructures can be calculated in different ways. Here ..." | ||
| 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 | ||
| Vol 9, No 5 (2018) | Investigation of the initial stages of spark-plasma sintering of Si–Ge based thermoelectric materials | Abstract PDF (Eng) similar documents |
| M. V. Dorokhin, I. V. Erofeeva, Yu. M. Kuznetsov, M. S. Boldin, A. V. Boryakov, A. A. Popov, E. A. Lantsev, N. V. Sakharov, P. B. Demina, A. V. Zdoroveyshchev, V. N. Trushin | ||
| Vol 9, No 2 (2018) | Cyclic-periodic ZRP structures. Scattering problem for generalized Bloch functions and conductivity | Abstract PDF (Eng) similar documents |
| S. Leble | ||
| "... Problems of quantum description of nanostructures transport properties is investigated ..." | ||
| Vol 10, No 2 (2019) | A model of an electron in a quantum graph interacting with a two-level system | Abstract PDF (Eng) similar documents |
| A. A. Boitsev, I. Y. Popov | ||
| Vol 9, No 6 (2018) | Solid-phase interaction in ZrO2–Fe2O3 nanocrystalline system | Abstract PDF (Eng) similar documents |
| S. A. Kirillova, O. V. Almjasheva, V. V. Panchuk, V. G. Semenov | ||
| Vol 16, No 2 (2025) | Understanding the electronic properties of carbon polyprismanes from the sp3 tight-binding model | Abstract PDF (Eng) similar documents |
| V. A. Kurakin, T. N. Kobernik | ||
| "... Carbon polyprismanes are 1D nanostructures that should be classified as diamond-like phases ..." | ||
| Vol 16, No 2 (2025) | Application of carbon nanomaterials in semiconductor electronics | Abstract PDF (Eng) similar documents |
| R. V. Shalayev, V. N. Varyukhin | ||
| Vol 14, No 5 (2023) | Planar perovskite solar cells with La2NiMnO6 buffer layer | Abstract PDF (Eng) similar documents |
| S. S. Kozlov, A. B. Nikolskaia, O. K. Karyagina, E. K. Kosareva, O V. Alexeeva, V. I. Petrova, O. V. Almjasheva, O. I. Shevaleevskiy | ||
| Vol 13, No 3 (2022) | Double perovskite oxides La2NiMnO6 and La2Ni0.8Fe0.2MnO6 for inorganic perovskite solar cells | Abstract PDF (Eng) similar documents |
| S. S. Kozlov, O. V. Alexeeva, A. B. Nikolskaia, O. I. Shevaleevskiy, D. D. Averkiev, P. V. Kozhuhovskaya, O. V. Almjasheva, L. L. Larina | ||
| Vol 13, No 4 (2022) | On Keller-Rubinow model for Liesegang structure formation | Abstract PDF (Eng) similar documents |
| T. N. Topaev, A. I. Popov, I. Y. Popov | ||
| "... micro- and nanostructures based on this approach. We consider the version of the one-dimensional model ..." | ||
| Vol 15, No 6 (2024) | Biomedical applications of graphene-based nanomaterials in gene delivery, tissue engineering, biosensing and for the development antibacterial agents | Abstract PDF (Eng) similar documents |
| K. N. Semenov, S. V. Ageev, O. S. Shemchuk, G. O. Iurev, Abdelsattar O. E. Abdelhalim, I. V. Murin, P. K. Kozhukhov, A. V. Penkova, D. N. Maystrenko, O. E. Molchanov, V. V. Sharoyko | ||
| Vol 15, No 5 (2024) | Tuning the nonlinear optical properties of a 1D excitonic GaAs quantum dot system under a semi-parabolic potential with a detailed comparison with the experimental results: interplay of hydrostatic pressure and temperature | Abstract PDF (Eng) similar documents |
| Suman Dahiya, Siddhartha Lahon, Rinku Sharma | ||
| Vol 16, No 6 (2025) | Multilevel physical unclonable function based on silver nanostructures randomly integrated into the crystalline silicon wafer | Abstract PDF (Eng) similar documents |
| M. Fedorova, E. Petrova, A. Larin, M. Sandomirskii, A. Ermina, S. Pavlov, Yu. Zharova, D. Permyakov, V. Yaroshenko, D. Zuev | ||
| "... We present an optical physical unclonable function (PUF) based on silver nanostructures randomly ..." | ||
| Vol 7, No 6 (2016) | High-temperature superconductivity: From macro- to nanoscale structures | Abstract PDF (Eng) similar documents |
| A. N. Kovalenko | ||
| "... and dielectrics. Electrical conductive contacts between nanoparticles and tunnel chains of nanoclusters, where ..." | ||
| Vol 7, No 1 (2016): Special Issue: Proceedings of the 12th Biennial International Conference “Advanced Carbon Nanostructures” (ACNS’2015) | Diffraction-based characterization of amorphous sp2 carbon: sensitivity to domain-like packing of nanostructures | Abstract PDF (Eng) similar documents |
| V. S. Neverov, P. A. Borisova, A. B. Kukushkin, V. V. Voloshinov | ||
| Vol 3, No 2 (2012) | Spinodal decomposition in the SiO2–TiO2 system and hierarchically organized nanostructures formation | Abstract similar documents |
| S. A. Kirillova, V. I. Almjashev, V. V. Gusarov | ||
| "... nanostructures. ..." | ||
| Vol 12, No 6 (2021) | Temperature dependence of recombination radiation in semiconductor nanostructures with quantum dots containing impurity complexes | Abstract PDF (Eng) similar documents |
| V. D. Krevchik, A. V. Razumov, M. B. Semenov, I. M. Moyko, A. V. Shorokhov | ||
| Vol 5, No 4 (2014) | In Memoriam: Alexander Ivanovskii, innovative researcher and science manager in computational materials science of advanced inorganic materials | Abstract PDF (Eng) similar documents |
| V. V. Bannikov, T. A. Denisova, A. N. Enyashin, N. I. Medvedeva, I. R. Shein, D. V. Suetin, V. P. Zhukov, M. V. Kuznetsov | ||
| Vol 3, No 6 (2012) | Formation of the Complexly organized nanostructures based on the FeOx–SiO2–TiO2 system | Abstract similar documents |
| S. A. Kirillova, V. I. Almjashev | ||
| Vol 6, No 3 (2015) | Neutron scattering from graphene oxide paper and thermally exfoliated reduced graphene oxide | Abstract PDF (Eng) similar documents |
| E. F. Sheka, I. Natkaniec, V. Mel’nikov, K. Druzbicki | ||
| Vol 4, No 3 (2013) | Structure peculiarities of nanocrystalline solid solutions in GdAlO3 – GdFeO3 system | Abstract PDF (Eng) similar documents |
| E. A. Tugova, V. V. Gusarov | ||
| Vol 7, No 1 (2016): Special Issue: Proceedings of the 12th Biennial International Conference “Advanced Carbon Nanostructures” (ACNS’2015) | C60 fullerene-containing polymer stars in mixed matrix membranes | Abstract PDF (Eng) similar documents |
| L. V. Vinogradova, A. Yu. Pulyalina, V. A. Rostovtseva, A. M. Toikka, G. A. Polotskaya | ||
| Vol 5, No 6 (2014) | Nanocrystalline perovskite-like oxides formation in Ln2O3 – Fe2O3 – H2O (Ln = La, Gd) systems | Abstract PDF (Eng) similar documents |
| E. A. Tugova, O. N. Karpov | ||
| Vol 10, No 1 (2019) | Very wide-bandgap nanostructured metal oxide materials for perovskite solar cells | Abstract PDF (Eng) similar documents |
| L. L. Larina, O. V. Alexeeva, O. V. Almjasheva, V. V. Gusarov, S. S. Kozlov, A. B. Nikolskaia, M. F. Vildanova, O. I. Shevaleevskiy | ||
| Vol 11, No 6 (2020) | Perovskite solar cells: recent progress and future prospects | Abstract PDF (Eng) similar documents |
| O. I. Shevaleevskiy | ||
| Vol 10, No 6 (2019) | Pt nanoparticle-functionalized RGO counter electrode for efficient dye-sensitized solar cells | Abstract PDF (Eng) similar documents |
| O. V. Alexeeva, S. S. Kozlov, L. L. Larina, O. I. Shevaleevskiy | ||
| Vol 12, No 3 (2021) | Personalized energy systems based on nanostructured materials | Abstract PDF (Eng) similar documents |
| A. N. Kovalenko, E. A. Tugova, V. I. Popkov, O. N. Karpov, A. I. Klyndyuk | ||
| "... . The mechanisms for formation of the required nanostructures in synthesized materials, especially those ..." | ||
| Vol 10, No 6 (2019) | Metric graph version of the FitzHugh–Nagumo model | Abstract PDF (Eng) similar documents |
| E. G. Fedorov, A. I. Popov, I. Y. Popov | ||
| "... coupling. The model can be used for description of signal transmission in different nanostructures ..." | ||
| Vol 12, No 6 (2021) | Ab initio calculations of layered compounds consisting of sp3 or sp+sp2 hybridized carbon atoms | Abstract PDF (Eng) similar documents |
| E. A. Belenkov, V. A. Greshnyakov, V. V. Mavrinskii | ||
| "... The density functional theory method was used to study new layered carbon nanostructures ..." | ||
| Vol 5, No 1 (2014) | The adsorption properties of polycrystalline graphene: quantum-chemical simulation | Abstract PDF (Eng) similar documents |
| N. A. Lvova, O. Yu. Ananina | ||
| "... and their fragments adsorption onto graphene nanoclusters with different types of grain boundaries. We describe ..." | ||
| Vol 7, No 4 (2016) | Antibacterial and catalytic properties of silver nanoparticles loaded zeolite: green method for synthesis of silver nanoparticles using lemon juice as reducing agent | Abstract PDF (Eng) similar documents |
| J. Selvamuthumari, S. Meenakshi, M. Ganesan, S. Nagaraj, K. Pandian | ||
| "... metal and metal sulfide nanoclusters. We have attempted to synthesis silver nanoparticle-loaded zeolite ..." | ||
| Vol 10, No 6 (2019) | Phosphors with different morphology, formed under hydrothermal conditions on the basis of ZrO2:Eu3+ nanocrystallites | Abstract PDF (Eng) similar documents |
| A. N. Bugrov, R. Yu. Smyslov, T. V. Khamova, D. A. Kirilenko, I. A. Rodionov | ||
| "... Eu3+-doped ZrO2 nanostructures in the form of rods, stars, and hollow spheres were prepared ..." | ||
| Vol 3, No 6 (2012) | The features of formation and modification of nanostructured films of carbon nitride | Abstract similar documents |
| A. M. Prudnikov, A. I. Linnik, R. V. Shalaev, V. V. Rumyantsev, A. O. Kucherik, A. P. Alodjants, S. M. Arakelian | ||
| "... of the amorphous phase and the formation of a divided columnar nanostructures. ..." | ||
| Vol 6, No 1 (2015) | On the Stokes flow computation algorithm based on woodbury formula | Abstract PDF (Eng) similar documents |
| A. I. Popov, I. S. Lobanov, I. Yu. Popov, T. V. Gerya | ||
| "... The Stokes approximation is used for the description of flow in nanostructures. An algorithm ..." | ||
| Vol 4, No 6 (2013) | Effect of hydrothermal synthesis conditions on the morphology of ZrO2 nanoparticles | Abstract PDF (Eng) similar documents |
| A. N. Bugrov, O. V. Almjasheva | ||
| "... of nanostructures based on zirconium dioxide under hydrothermal conditions is the chemical prehistory ..." | ||
| Vol 3, No 2 (2012) | Aluminum and antimony-doped zinc oxide nanorod arrays synthesized on zinc foil by hydrothermal route | Abstract similar documents |
| A. I. Gavrilov, A. N. Baranov, B. R. Churagulov, B. P. Mihaylov | ||
| "... Aluminum and antimony-doped zinc oxide nanostructures, oriented on the zinc metal substrates were ..." | ||
| Vol 2, No 4 (2011) | Evaluation criteria of energy properties of surface of nanomaterials | Abstract similar documents |
| M. A. Frolova, A. S. Tutygin, A. M. Aizenstadt, V. S. Lesovik, T. A. Makhova, T. A. Pospelova | ||
| "... the strength of the relationship of composites based on nanostructures. ..." | ||
| Vol 11, No 6 (2020) | Resonance asymptotics for a pair quantum waveguides with common semitransparent perforated wall | Abstract PDF (Eng) similar documents |
| A. M. Vorobiev, E. S. Trifanova, I. Y. Popov | ||
| "... A nanostructure model,which is represented as a pair of coupled two-dimensional quantum waveguides ..." | ||
| Vol 12, No 3 (2021) | Green’s function method for time-fractional diffusion equation on the star graph with equal bonds | Abstract PDF (Eng) similar documents |
| Z. A. Sobirov, K. U. Rakhimov, R. E. Ergashov | ||
| "... applications in branched nanostructures were discussed. ..." | ||
| Vol 5, No 4 (2014) | Chlorgraphynes: formation path, structure and electronic properties | Abstract PDF (Eng) similar documents |
| A. L. Ivanovskii, A. N. Enyashin | ||
| "... ability of these nanostructures for saturation. E.g., covalent binding of chlorine atoms would lead to sp3 ..." | ||
| Vol 5, No 4 (2014) | Electronic properties of MoS2 monolayer and related structures | Abstract PDF (Eng) similar documents |
| A. N. Enyashin, G. Е. Seifert | ||
| "... for these nanostructures. ..." | ||
| Vol 9, No 5 (2018) | Effect of Ce cations on the crystallite size and pore structure genesis in nanostructured rutile after calcination | Abstract PDF (Eng) similar documents |
| N. V. Shikina, E. V. Bessudnova, V. A. Ushakov, A. P. Nikitin, M. S. Mel’gunov, A. V. Ishchenko, Z. R. Ismagilov | ||
| "... A method for the low-temperature synthesis of titania with the 3D rutile nanostructure ..." | ||
| Vol 14, No 4 (2023) | Optimization of certain synthesis parameters for CdSe quantum dots and synthesis of CdSe–ZnSe nano-tetrapods through facile hot injection method | Abstract PDF (Eng) similar documents |
| Boni Samuel, K. J. Adarsh, V.P.N. Nampoor, A. Mujeeb | ||
| "... nanostructures were synthesized with tetrapod morphology and their structural and optical properties were studied ..." | ||
| Vol 15, No 5 (2024) | Skyrmionium – semicircular magnetic defect interaction on a racetrack | Abstract PDF (Eng) similar documents |
| S. Navarro-Vilca, S. Urcia-Romero, H. Vigo-Cotrina | ||
| "... types of nanostructures. In this research, we use micromagnetic simulations to study the dynamics ..." | ||
| Vol 14, No 3 (2023) | Single-step lithography-free fabrication of nanoscale broadband radiation sources | Abstract PDF (Eng) similar documents |
| E. I. Ageev, S. V. Koromyslov, M. A. Gremilov, D. V. Danilov, E. A. Petrova, I. I. Shishkin, D. A. Zuev | ||
| "... nanostructures without the use of complex and expensive lithographic processes. The formation of arrays ..." | ||
| Vol 4, No 3 (2013) | Electrofabrication of nanostructured multilayer coatings for better corrosion protection | Abstract PDF (Eng) similar documents |
| R. R. Vaishaka, A. C. Hegde | ||
| "... In an effort to improve the corrosion resistance of monolayer Zn-Ni alloy coatings, nanostructure ..." | ||
| Vol 9, No 1 (2018) | Effect of heat treatment and tension on the surface morphology of thin Pt foils | Abstract PDF (Eng) similar documents |
| V. E. Korsukov, P. N. Butenko, A. G. Kadomtsev, M. M. Korsukova, V. S. Levitskii, A. Nyapshaev, B. A. Obidov | ||
| "... We investigated the formation of nanostructures on the surface of rolled thin platinum foils ..." | ||
| Vol 13, No 5 (2022) | Synthesis 2D nanocrystals of Co-doped manganese oxide as cathode materials of zinc-ion hybrid supercapacitor | Abstract PDF (Eng) similar documents |
| A. A. Lobinsky, M. I. Tenevich | ||
| "... nanostructure via successive ionic layer deposition method as cathode material of zinc-ion hybrid supercapacitor ..." | ||
| 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 | ||
| "... (WO3) nanostructures have been extensively studied for their diverse technological applications ..." | ||
| Vol 14, No 6 (2023) | Study of the electrical and electronic properties of crystalline molybdenum disulfide (MoS2-3R) semiconductor nano using alternating current (AC) measurements | Abstract PDF (Eng) similar documents |
| H. Alhussein, J. Q AlSharr, S. Othman, H. AlKhamisy | ||
| "... MoS2 nanostructures were prepared using the hydrothermal method by reacting ammonium ..." | ||
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