Bibliographic Details
| Title: |
Electrophysical properties of thin metal-carbon films containing one-dimensional carbon structures. |
| Authors: |
Osipov, Anton1 (AUTHOR) osipov@vlsu.ru, Bukharov, Dmitriy1 (AUTHOR) buharovdn@gmail.com, Samyshkin, Vlad1 (AUTHOR) simplevladius@mail.ru, Lelekova, Anastasia1 (AUTHOR) lelekowa.a@yandex.ru, Abramov, Andrey1 (AUTHOR) abramov.andrey.1997@gmail.com, Kucherik, Alexey1 (AUTHOR) kucherik@vlsu.ru |
| Source: |
Optical & Quantum Electronics. Oct2025, Vol. 57 Issue 10, p1-11. 11p. |
| Subjects: |
Gold nanoparticles, Electric conductivity, Charge transfer, Carbon films, Schottky barrier, Electron tunneling, Carbon nanowires, Electric properties |
| Abstract: |
This article investigates the electrophysical properties of thin metal-carbon films containing one-dimensional carbon structures stabilized by gold nanoparticles. It is shown that the gold concentration in the film significantly affects conductivity: at high concentrations, metallic charge transport dominates, while at low concentrations, semiconductor-like behavior with a Schottky barrier is observed. A tunneling conductivity model accounting for nanoparticle concentration is developed and validated with an error of up to 10%. Resonance optical pumping induces the generation of free charge carriers, suggesting potential applications in optoelectronics. [ABSTRACT FROM AUTHOR] |
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| Database: |
Engineering Source |