Alexey D. Bolshakov
Alexey D. Bolshakov
Affiliation
Moscow Institute of Physics and Technology (National Research University)
Moscow, Russian Federation
Publications

Study of quasi 1-D silicon nanostructures adsorption properties

Condensed matter physics
  • Year: 2022
  • Volume: 15
  • Issue: 3.2
  • 57
  • 5293
  • Pages: 10-15

Study of hydrothermal zinc oxide nanostructures photovoltaic properties

Condensed matter physics
  • Year: 2022
  • Volume: 15
  • Issue: 3.2
  • 43
  • 5130
  • Pages: 16-20

Study of quasi 1D silicon nanostructures adsorption properties via impedance spectroscopy

Condensed matter physics
  • Year: 2023
  • Volume: 16
  • Issue: 1.1
  • 29
  • 4691
  • Pages: 43-48

Towards nanowire-based selective vapor sensing with an aid of impedance spectroscopy

Condensed matter physics
  • Year: 2023
  • Volume: 16
  • Issue: 3.1
  • 12
  • 3894
  • Pages: 151-156

Pressure sensing with ZnO structures in PDMS matrix via impedance spectroscopy

Condensed matter physics
  • Year: 2023
  • Volume: 16
  • Issue: 3.1
  • 11
  • 3936
  • Pages: 157-162

Deep-Level Emission Tailoring in ZnO Nanostructures Grown via Hydrothermal Synthesis

Condensed matter physics
  • Year: 2023
  • Volume: 16
  • Issue: 3.1
  • 19
  • 3926
  • Pages: 176-181

Towards versatile photonics based on GaP nanowires decorated with carbon dots

Condensed matter physics
  • Year: 2023
  • Volume: 16
  • Issue: 3.1
  • 22
  • 4055
  • Pages: 187-192

Photoluminescence anisotropy in hybrid nanostructures based on gallium phosphide nanowire and 2D transition metal dichalcogenides

Physical optics
  • Year: 2023
  • Volume: 16
  • Issue: 3.2
  • 15
  • 3938
  • Pages: 130-136

Photosensitive nanostructures based on gallium phosphide nanowires and carbon dots

Quantum wires, quantum dots, and other low-dimensional systems
  • Year: 2024
  • Volume: 17
  • Issue: 1.1
  • 58
  • 3274
  • Pages: 113-118

Potentially flexible sensor based on the ZnO-PDMS matrix for measuring mechanical load

Optoelectronic and nanoelectronic devices
  • Year: 2024
  • Volume: 17
  • Issue: 1.1
  • 37
  • 3304
  • Pages: 137-142

Temperature evolution of GaP nanowires photoelectronic properties

Quantum wires, quantum dots, and other low-dimensional systems
  • Year: 2024
  • Volume: 17
  • Issue: 1.1
  • 32
  • 3129
  • Pages: 119-124

Pressure and temperature sensing via ZnO-PDMS based membrane for wearable electronic applications

Condensed matter physics
  • Year: 2024
  • Volume: 17
  • Issue: 3.1
  • 30
  • 2612
  • Pages: 63-67

Resonant scattering of silicon nanopillars for nonlinear optics

Simulation of physical processes
  • Year: 2024
  • Volume: 17
  • Issue: 3.1
  • 10
  • 2673
  • Pages: 110-114

Random lasing in hydrothermal ZnO structures

Condensed matter physics
  • Year: 2024
  • Volume: 17
  • Issue: 3.2
  • 18
  • 2398
  • Pages: 36-41

Peculiarities of the local electromagnetic field distribution in non-van-der-Waals InGaS3 thin layers slot waveguides

Condensed matter physics
  • Year: 2024
  • Volume: 17
  • Issue: 3.2
  • 7
  • 2305
  • Pages: 57-61

Fluorescence of hybrid structures based on carbon dots and GaP, GaN, Si nanowires

Quantum wires, quantum dots, and other low-dimensional systems
  • Year: 2025
  • Volume: 18
  • Issue: 1.1
  • 10
  • 3356
  • Pages: 77-82

Silicon nanowire based sensorics of acids and bases

Optoelectronic and nanoelectronic devices
  • Year: 2025
  • Volume: 18
  • Issue: 1.1
  • 18
  • 3479
  • Pages: 145-151

Hybrid emitters based on two-dimensional WSe2 and ordered plasmonic nanobumps

Condensed matter physics
  • Year: 2025
  • Volume: 18
  • Issue: 3.1
  • 0
  • 72
  • Pages: 30-35

Modification of silicon nanowires with silver nanoparticles for gas sensor applications

Condensed matter physics
  • Year: 2025
  • Volume: 18
  • Issue: 3.1
  • 0
  • 57
  • Pages: 81-84

Scanning probe lithography implementation for InGaS3 optical waveguides fabrication

Condensed matter physics
  • Year: 2025
  • Volume: 18
  • Issue: 3.2
  • 0
  • 29
  • Pages: 11-15

Numerical modeling of optical transmittance of 2×2 directional couplers based on GaP nanowires

Simulation of physical processes
  • Year: 2025
  • Volume: 18
  • Issue: 3.2
  • 0
  • 25
  • Pages: 76-80