Modeling of sensor properties for reducing gases and charge distribution in nanostructured oxides: A comparison of theory with experimental dataV. L. Bodneva, Л. И. Трахтенберг, M. A. Kozhushner et al.|Sensors and Actuators B Chemical|2019Cited by 17
Absorption of Infrared Radiation by an Electronic Subsystem of Semiconductor NanoparticlesЛ. И. Трахтенберг, Olusegun J. Ilegbusi, V. S. Posvyanskiǐ et al.|The Journal of Physical Chemistry C|2016Cited by 12
Magnetization reversal of ferromagnetic nanoparticles induced by a stream of polarized electronsM. A. Kozhushner, Л. И. Трахтенберг, А. К. Гатин et al.|Journal of Magnetism and Magnetic Materials|2016Cited by 9
Electric field distribution and chemical reactions near nano-dimensional truncated cone under strong external fieldM. A. Kozhushner, Л. И. Трахтенберг, V. S. Posvyanskiǐ et al.|Chemical Physics|2020Cited by 3
Comments on the article “Calculation of the electric potential and surface oxygen ion density for planar and spherical metal oxide grains by numerical solution of the Poisson equation coupled with Boltzmann and Fermi-Dirac statistics” (Sensors and Actuators B: Chemical, 293 (2019) 31–40)Л. И. Трахтенберг, M. A. Kozhushner, Olusegun J. Ilegbusi|Sensors and Actuators B Chemical|2019Cited by 2