Surface degradation of M-type cathodes modified with nanocarbon Tatyana M. Krachkovskaya1, Yuliya V. Yakimovich1,2, Anna A. Akst1,3, Olga E. Glukhova1,3,4, Aleksandr A. Petrunin3; 1JSC "RPE "Almaz", Saratov, Russia; 2Saratov State Technical University, Saratov, Russia; 3Saratov State University, Saratov, Russia; 4First Moscow State Medical University named after I. M. Sechenov, Moscow, Russia
STUDY OF THE ELECTROPHYSICAL PROPERTIES OF MULTISCALE STRUCTURES BASED ON CARBON NANOMATERIALS FOR NEURAL INTERFACES Denis T. Murashko1, Boris M. Putrya1, Krisitina D. Efremova1,2, Ulyana E. Kurilova1,2, Pavel N. Vasilevsky1, Irina A. Suetina3, Marina V. Mezentseva3 ,Alexander Yu. Gerasimenko1,2
1National Research University of Electronic Technology MIET, Shokin Square 1, 124498 Zelenograd, Moscow, Russia;
2I.M. Sechenov First Moscow State Medical University, Bolshaya Pirogovskaya street 2-4, 119991 Moscow, Russia;
3National Research Center for Epidemiology and Microbiology Named after the Honorary Academician N.F. Gamaleya, Gamaleya Street 18, 123098 Moscow, Russia
Development of laser-induced thin-film hybrid carbon nanocomposites for neurointerfaces and stimulation of neuroregeneration Victoria V. Suchkova 1,2, Alexandra S. Ivanova 1, Ekaterina A. Demirskaya 1, Artem V. Kuksin 2, Alexander Yu. Gerasimenko 1,2
1 Institute of Biomedical Systems, National Research University of Electronic Technology, Shokin Square 1, Zelenograd, 124498 Moscow, Russia
2 Institute for Bionic Technologies and Engineering, I.M. Sechenov First Moscow State Medical University, Bolshaya Pirogovskaya Street 2-4, 119435 Moscow, Russia
OPTICAL PASSIVE LIMITING OF COMPOSITE CARBON NANOMATERIAL: MULTI-WALLED NANOTUBES, REDUCED GRAPHENE OXIDE SHEETS, AND ZINC PHTHALOCYANINE Pavel N.Vasilevsky1, Mikhail S. Savelyev1,2, Alexander Yu. Tolbin2, Alexander Yu. Gerasimenko1,3
1Institute of Biomedical Systems, National Research University of Electronic Technology, Zelenograd, Moscow, 124498, Russian Federation; 2FSBIS Institute of Physiologically Active Compounds of the Russian Academy of Sciences, Russian Academy of Sciences, Chernogolovka, Moscow Region, 142432, Russian Federation; 3Institute for Bionic Technologies and Engineering, Sechenov University, Moscow, 119991, Russian Federation
Tunneling Current Control in Graphene-Nanotube Structures Michael M. Slepchenkov1, Dmitry A. Kolosov1, Olga E. Glukhova1,2; 1Saratov State University, Saratov, Russia; 2I.M. Sechenov First Moscow State Medical University, Moscow, Russia
Key Parameters Screening of the Quantum Dot Synthesis Artyom K. Skvortsov, Victoria D. Gorlo, Danila A. Kornilov, Daniil D. Drozd, Pavel S. Pidenko, Irina Yu. Goryacheva, Natalia A. Burmistrova; Saratov State University, Saratov, Russia
Effect of Surface Adsorption of Ba, O, and BaO on the Work Function of Different Hafnium Phases The effect of crystal structure on the electron-emission properties of thin hafnium films whose surfaces were modified with Ba and O atoms or BaO molecules was investigated using density functional theory (DFT/PBE) as implemented in the SIESTA software package. Cubic, hexagonal, and triclinic Hf structures were considered. It was established that a five-layer slab model is sufficient to reproduce the work function of bulk hafnium. For unmodified Hf, the work function ranges from 3.20 to 4.16 eV and depends strongly on the crystal structure.