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March 19, 2026International Journal of Energy Studies0 citations

Investigation of electrical properties of fabricated Schottky diodes with organic interfaces in terms of radiation

THTuğba HacıosmanoğluHKH. Karadeniz

Key Points

  • The research aims to explore how radiation affects the electrical properties of organic Schottky diodes.
  • Fabricated organic-based Schottky devices in laboratory settings
  • Exposed diodes to proton radiation environments
  • Analyzed current-voltage characteristics pre- and post-irradiation
  • Used graphs to investigate changes in fundamental electrical parameters
  • Identified significant changes in electrical parameters after proton irradiation
  • Demonstrated the potential impact of radiation on energy storage systems
  • Found that organic Schottky diodes maintain some functionality under radiation exposure

Abstract

The behavior of metal/semiconductor structures with organic interfaces exposed to proton radiation in radiation environments was investigated. For this purpose, organic-based Schottky devices have been fabricated within laboratory facilities, and the fundamental electrical parameters of structures have been investigated using graphs. The current-voltage (I-V) characteristics of metal/methyl-red/semiconductor Schottky devices before and after irradiation have been obtained, and changes in their electrical parameters have been investigated using these characteristics. This study is important in the context of energy storage and protection in power applications of electronic devices for space grade. Recently, energy storage technologies and power systems resistant to changes in radiation environments has become critical in electronic power applications.

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Cite This Study

Hacıosmanoğlu et al. (2026) studied this question.

synapsesocial.com/papers/69bb92ae496e729e6298023bhttps://doi.org/10.58559/ijes.1886286
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