-
Heeseon Lim, Yanan Wang, Namitha Ann James, Hongli Guo, Jin Zhao, Hrvoje Petek, “Adsorption and electronic structure of submonolayer Ca on Ag(111)”, Phys. Rev. B, 110:7 (2024)
-
E. V. Votyakov, Yu. K. Tovbin, “Uchet nepryamykh korrelyatsii vzaimodeistvuyuschikh chastits na mono- i bimolekulyarnye skorosti adsorbtsii i desorbtsii pri khemosorbtsii”, Russian Journal of Physical Chemistry, 98:4 (2024), 104
-
Saurov A.N., L'vov P.E., Bulyarskiy V S., Svetukhin V.V., “Formation of Nanoparticles of Bi-Metallic Catalysts For the Growth of Carbon Nanotubes”, J. Mater. Chem. C, 2022
-
Hiroyuki Kawano, “Effective Work Functions of the Elements”, Progress in Surface Science, 97:1 (2022), 100583
-
S. Yu. Davydov, O. V. Posrednik, “Adsorption of I and VII groups atoms on the silicon carbide polytypes”, Semiconductors, 54:11 (2020), 1410–1416
-
S. Yu. Davydov, O. V. Posrednik, “Adsorption of Polar Molecules on a Solid Substrate”, Mech. Solids, 55:1 (2020), 90
-
S. Yu. Davydov, A. V. Zubov, “On the dipole–dipole interaction of atoms in the layers adsorbed on three- and two-dimensional semiconductors”, Phys. Solid State, 62:8 (2020), 1469–1472
-
S. Yu. Davydov, O. V. Posrednik, “On the gases adsorption on silicon carbide: simple estimates”, Phys. Solid State, 61:8 (2019), 1490–1493
-
Ceren Tayran, “Theoretical study of B segregation in Mo(110)”, Journal of Boron, 2018
-
S. Yu. Davydov, A. A. Lebedev, Yu. V. Lubimova, “The role of the charge state of surface atoms of a metal substrate in doping of quasi-free-standing graphene”, Tech. Phys. Lett., 44:12 (2018), 1089–1091
-
N. N. Konobeeva, A. V. Ten, M. B. Belonenko, “On Dipole Moment of Impurity Carbon Nanotubes”, Russ Phys J, 59:12 (2017), 2137
-
K. R. Izrael'yants, A. P. Orlov, A. B. Ormont, E. G. Chirkova, “Effect of the cesium and potassium doping of multiwalled carbon nanotubes grown in an electrical arc on their emission characteristics”, Phys. Solid State, 59:4 (2017), 838–844
-
Barbara Gränz, Sergey E. Korshunov, Vadim B. Geshkenbein, Gianni Blatter, “Competing structures in two dimensions: Square-to-hexagonal transition”, Phys. Rev. B, 94:5 (2016)
-
Surface Physics, 2016, 289
-
Anton.G. Naumovets, Surface and Interface Science, 2016, 157
-
S. A. Sudorgin, N. G. Lebedev, “Transport properties of bilayer graphene nanoribbons with hydrogen adatoms”, Russ. J. Phys. Chem. B, 10:5 (2016), 844
-
S Sudorgin, N Lebedev, Nanomaterials and Nanotechnology for Composites, 2015, 1
-
Hans Lüth, Graduate Texts in Physics, Solid Surfaces, Interfaces and Thin Films, 2015, 527
-
S Sudorgin, N Lebedev, Physical Chemistry Research for Engineering and Applied Sciences, Volume Two, 2015, 1
-
S. A. Sudorgin, N. G. Lebedev, “Effect of atomic hydrogen adsorption on the transport characteristics of semiconducting carbon nanotubes”, Russ. J. Phys. Chem. B, 8:4 (2014), 590