Modelling of 1.8 MeV energetic proton irradiation of Monolayer Graphene Grown on SiC By The Use of SRIM Monte Carlo Code and investigation of its generated effects
2016
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Advisor: Yrd. Doç. Dr. Hatun Korkut
Abstract (EN)
Graphene is a two-dimensional material in the form of honey combs created by arranged in a single layer of carbon atoms. It excellently conducts electricity and heat. Although it is a very durable material, it is very flexible. It can be squirmed easily without losing its properties. Graphene, which is the remarkable material, is one of the most studied semiconductor because of these characteristics, recently. Conducted researches aim to better analyzing and synthesising of its properties. In addition to all these properties, graphene's reaction to radiation is also object of interest. Effects of 1.8 MeV proton radiation to 4.5 mm thickness monolayer graphene on the SiC substrate were investigated by SRIM (stopping and range of ions in matter) Monte Carlo programme. Regarding that proton-graphene/SiC interactions several parameters were given such atom distrubutions, ion distrubutions, target ionization, phonons and damage events were simulated.
Author
Dr. Nahide Karabulut
Institution
How to Cite
Nahide Karabulut (Master Thesis). Modelling of 1.8 MeV energetic proton irradiation of Monolayer Graphene Grown on SiC By The Use of SRIM Monte Carlo Code and investigation of its generated effects, 2016, Sinop University.
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