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Issue | Title | |
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 | ||
"... present the sp3 tightbinding model based calculations of the band structures for carbon polyprismanes ..." | ||
Vol 11, No 5 (2020) | Stability and electronic properties of ZnSe nanowires: An ab initio approach | Abstract PDF (Eng) similar documents |
Sanjay Prakash Kaushik, Satyendra Singh, Ram-Krishna Thakur | ||
"... been used for the study. The band structure, geometrical optimization and stability of proposed ..." | ||
Vol 15, No 5 (2024) | Ceramic materials prepared from nanocrystalline InFeZnO4 powder: optical and mechanical properties, and evaluation of radiation tolerance | Abstract PDF (Eng) similar documents |
Olga N. Kondrat’eva, Maria N. Smirnova, Galina E. Nikiforova, Alexey D. Yapryntsev, Dmitriy F. Kondakov, Leonid D. Yagudin | ||
"... confirmed by FTIR spectroscopy. From the DRS data, it has been found that the band gap energy Eg of InFeZnO4 ..." | ||
Vol 13, No 1 (2022) | A model of sheared nanoribbons | Abstract PDF (Eng) similar documents |
Ph. Briet | ||
"... on an infinite band subject to a “shearing”. We give conditions for which the shear does not produce discret ..." | ||
Vol 15, No 4 (2024) | Diameter dependent geometrical and electrical properties of zigzag HgSe nanotubes: A density functional study. | Abstract PDF (Eng) similar documents |
M. Das | ||
"... width, binding energy, strain energy, band structure, density of states etc. of several zigzag HgSe ..." | ||
Vol 16, No 3 (2025) | Boron doped small fullerenes C20, C24, C28 as a basis for the formation of heterostructures | Abstract PDF (Eng) similar documents |
A. R. El Zanin, S. V. Boroznin, I. V. Zaporotskova | ||
"... were calculated and the stability of optimized structures was estimated. An analysis of one-electron ..." | ||
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 | ||
Vol 11, No 1 (2020) | Electron transport through nanosystems driven by pseudo-Gaussian well scattering | Abstract PDF (Eng) similar documents |
Felix Iacob | ||
Vol 15, No 5 (2024) | Ionic channel structure in perfluorinated membranes studied by small angle X-ray scattering, optical and Mossbauer spectroscopy | Abstract PDF (Eng) similar documents |
Vasily T. Lebedev, Valery S. Kozlov, Mikhail V. Remizov, Yury V. Kulvelis, Oleg N. Primachenko, Elena A. Marinenko, Georgy S. Peters | ||
Vol 15, No 1 (2024) | Single-domain particles of manganese-for-iron substituted M-type barium hexaferrite: synthesis, crystal structure, and magnetic properties | Abstract PDF (Eng) similar documents |
P. E. Kazin, A. E. Sleptsova, A. V. Vasiliev, A. A. Eliseev, R. E. Dinnebier, S. Bette | ||
"... -combustion technique with final annealing temperatures of 900 – 1200 ◦C. The crystal structures were refined ..." | ||
Vol 11, No 4 (2020) | Demagnetizing fields in chiral magnetic structures | Abstract PDF (Eng) similar documents |
M. A. Moskalenko, I. S. Lobanov, V. M. Uzdin | ||
"... the magnetic transition in chiral magnetic structures. Instead of directly summing the dipole interactions ..." | ||
Vol 11, No 2 (2020) | Model of destruction of montmorillonite crystal structure in a microwave field | Abstract PDF (Eng) similar documents |
N. V. Makarov, O. N. Kanygina | ||
"... We address amorphization of montmorillonite crystal structure. Powdered montmorillonite samples ..." | ||
Vol 13, No 3 (2022) | Assessment of structural changes in proteins and surrounding water molecules in solution according to SAXS and MD data | Abstract PDF (Eng) similar documents |
A. V. Smirnov, A. M. Semenov, Yu. B. Porozov, B. A. Fedorov | ||
"... program (the “cube method”) is also used, it assumes that the protein structures in crystal ..." | ||
Vol 14, No 2 (2023) | Structural and magnetic study of Tb3+ doped zinc ferrite by sol-gel auto-combustion technique | Abstract PDF (Eng) similar documents |
Sh. G. Jamdade, P. S. Tambade, S. M. Rathod | ||
"... the samples were sintered at 400 C for 4 hours. The structure has been studied using XRD, FTIR, UV-visible ..." | ||
Vol 11, No 4 (2020) | Synthesis of NaYF4:Yb, Er up-conversion luminophore from nitrate flux | Abstract PDF (Eng) similar documents |
P. P. Fedorov, M. N. Mayakova, A. A. Alexandrov, V. V. Voronov, D. V. Pominova, E. V. Chernov, V. K. Ivanov | ||
Vol 14, No 4 (2023) | Solution processed Ag–In–S nanoparticles as light adsorber in ZnO for photovoltaic application | Abstract PDF (Eng) similar documents |
K. Abinaya, P. Sharvanti, N. Rajeswari Yogamalar | ||
"... transfer and the assembled hetero-structure features the solar light harvesting in PV cell. The powder X ..." | ||
Vol 15, No 4 (2024) | Study of photocatalytic activity in two light ranges of Sr2Mn0.4Ti0.6O4 oxide with the K2NiF4-type structure. | Abstract PDF (Eng) similar documents |
T. I. Chupakhina, O. I. Gyrdasova, A. M. Uporova, L. Y. Buldakova, M. Y. Yanchenko, D. V. Mamedov, Yu. A. Deeva, I. V. Baklanova | ||
"... -NIR spectroscopy data, a narrowing of the band gap of Sr2TiO4 from 3.16 to 1.8 eV is observed when ..." | ||
Vol 15, No 6 (2024) | Phase formation and thermal analysis in the LaPO4–GdPO4–H2O system | Abstract PDF (Eng) similar documents |
M. O. Enikeeva, K. A. Zhidomorova, D. P. Danilovich, V. N. Nevedomskiy, O. V. Proskurina, V. V. Gusarov | ||
"... days). It has been shown that a phase with the rhabdophane-like structure, La1−xGdxPO4*nH2O (0.00≤ x ≤1 ..." | ||
Vol 14, No 2 (2023) | Study of ion partitioning in nanoporous materials by analytical approach and molecular modeling | Abstract PDF (Eng) similar documents |
J. Dweik, M. Koabazb | ||
"... that the distribution of ions depends on their size, polarizability and the structure of water when it is explicitly ..." | ||
Vol 14, No 3 (2023) | Synthesis of PbFe2.4X2.4Y2.4Ga2.4In2.4O19 high-entropy oxides with the magnetoplumbite structure | Abstract PDF (Eng) similar documents |
O. V. Zaitseva, E. A. Trofimov, V. E. Zhivulin, A. Ostovari Mogaddam, O. V. Samoilova, K. S. Litvinyuk, A. R. Zykova, D. V. Mikhailov, S. A. Gudkova, D. A. Vinnik | ||
"... The purpose of this study is to obtain high-entropy oxides with the magnetoplumbite structure ..." | ||
Vol 12, No 1 (2021) | Bifurcating standing waves for effective equations in gapped honeycomb structures | Abstract PDF (Eng) similar documents |
W. Borrelli, R. Carlone | ||
"... in gapped honeycomb structures. We give a formal derivation starting from cubic Schrodinger equations ..." | ||
Vol 11, No 3 (2020) | Raman study of glasses in the NbO2F–BaF2–InF3–ErF3 and CdNbOF5–BaF2–InF3 systems | Abstract PDF (Eng) similar documents |
L. N. Ignatieva, N. N. Savchenko, Y. V. Marchenko, V. A. Mashchenko, V. M. Bouznik | ||
Vol 16, No 2 (2025) | Phase formation in the Na2O-Bi2O3-Fe2O3-MoO3-(H2O) system | Abstract PDF (Eng) similar documents |
M. S. Lomakin | ||
"... ) with a scheelite-like structure (sp. gr. I¯4, No. 82) are formed, which have not been previously described ..." | ||
Vol 15, No 5 (2024) | Simulation of Bessel plasmon polariton field formation in a dielectric-metal structure | Abstract PDF (Eng) similar documents |
Nguyen Pham Quynh Anh | ||
"... in a dielectric-metal structure excited by a Bessel light beam with arbitrary polarization. The effect ..." | ||
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 | ||
"... of a “core-shell” structure was confirmed using chemical methods by etching ultraand nanodispersed powders ..." | ||
Vol 15, No 2 (2024) | Pyrochlore phase in the Bi2O3‒Fe2O3‒WO3‒(H2O) system: its stability field in the low-temperature region of the phase diagram and thermal stability | Abstract PDF (Eng) similar documents |
M. S. Lomakin, O. V. Proskurina, A. A. Levin, V. N. Nevedomskiy | ||
Vol 15, No 5 (2024) | Magnesium based tin-silicon alloys under pressure: first-principles evolution search results | Abstract PDF (Eng) similar documents |
Yuri V. Luniakov | ||
"... The search of minimal enthalpy structures of ternary magnesium alloys of different stoichiometry ..." | ||
Vol 13, No 4 (2022) | Study of the structure and bioactivity of powdered iron oxides synthesized by sol-gel method | Abstract PDF (Eng) similar documents |
T. V. Khamova, O. A. Shilova, Yu. E. Gorshkova, N. V. Tsvigun, O. V. Gerashchenko, A. E. Baranchikov, O. R. Udalova, A. S. Zhuravleva, G. G. Panova, G. P. Kopitsa | ||
"... hierarchically organized structure with different intrinsic scales and aggregation types for each ..." | ||
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 | ||
"... ∼ 10 at.%. The band gap increases from 0.11 to 3.09 eV with an increase of the amount of adsorbed ..." | ||
Vol 11, No 6 (2020) | SANS studies of nanostructured low-melting metals at room temperature | Abstract PDF (Eng) similar documents |
A. A. Naberezhnov, S. A. Borisov, A. V. Fokin, A. Kh. Islamov, A. I. Kuklin, Yu. A. Kumzerov | ||
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 | ||
Vol 14, No 6 (2023) | Planetary grinding’s impact on the structure and photocatalytic characteristics of urea-derived g-C3N4 nanocrystals | Abstract PDF (Eng) similar documents |
M. I. Chebanenko, L. A. Lebedev, M. I. Tenevich, E. Yu. Stovpiaga, V. I. Popkov | ||
"... impacts the crystal and electronic structures of g-C3N4 nanocrystals. Six samples, subjected to varying ..." | ||
Vol 13, No 3 (2022) | Influence of dissipative tunneling on the photodielectric effect associated with the excitation of impurity complexes A+ + e in a quasi-zero-dimensional structure | Abstract PDF (Eng) similar documents |
V. D. Krevchik, A. V. Razumov, M. B. Semenov, A. V. Levashov, A. V. Shorokhov | ||
"... in a quasi-zero-dimensional structure, has been studied in the zero-radius potential model in the one ..." | ||
Vol 13, No 4 (2022) | Synthesis, investigation, structural and elastic properties of MgxZn1-xFe2O4 nanoparticles | Abstract PDF (Eng) similar documents |
P. V. Patil, N. D. Chaudhari, P. R. Kute, R. D. Kale | ||
"... -ray diffraction technique and it confirms the formation of cubic spinel structure. The ferrite ..." | ||
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