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Effect of Electron and Proton Irradiation on Structural and Electronic Properties of Carbon Nanowalls

[Image: see text] In this work, a complex experimental study of the effect of electron and proton ionizing radiation on the properties of carbon nanowalls (CNWs) is carried out using various state-of-the-art materials characterization techniques. CNW layers on quartz substrates were exposed to 5 MeV...

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Autores principales: Yerlanuly, Yerassyl, Zhumadilov, Rakhymzhan Ye, Danko, Igor V., Janseitov, Daniyar M., Nemkayeva, Renata R., Kireyev, Alexander V., Arystan, Aidana B., Akhtanova, Gulnur, Vollbrecht, Joachim, Schopp, Nora, Nurmukhanbetova, Aliya, Ramazanov, Tlekkabul S., Jumabekov, Askhat N., Oreshkin, Pavel A., Zholdybayev, Timur K., Gabdullin, Maratbek T., Brus, Viktor V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9798766/
https://www.ncbi.nlm.nih.gov/pubmed/36591155
http://dx.doi.org/10.1021/acsomega.2c06735
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author Yerlanuly, Yerassyl
Zhumadilov, Rakhymzhan Ye
Danko, Igor V.
Janseitov, Daniyar M.
Nemkayeva, Renata R.
Kireyev, Alexander V.
Arystan, Aidana B.
Akhtanova, Gulnur
Vollbrecht, Joachim
Schopp, Nora
Nurmukhanbetova, Aliya
Ramazanov, Tlekkabul S.
Jumabekov, Askhat N.
Oreshkin, Pavel A.
Zholdybayev, Timur K.
Gabdullin, Maratbek T.
Brus, Viktor V.
author_facet Yerlanuly, Yerassyl
Zhumadilov, Rakhymzhan Ye
Danko, Igor V.
Janseitov, Daniyar M.
Nemkayeva, Renata R.
Kireyev, Alexander V.
Arystan, Aidana B.
Akhtanova, Gulnur
Vollbrecht, Joachim
Schopp, Nora
Nurmukhanbetova, Aliya
Ramazanov, Tlekkabul S.
Jumabekov, Askhat N.
Oreshkin, Pavel A.
Zholdybayev, Timur K.
Gabdullin, Maratbek T.
Brus, Viktor V.
author_sort Yerlanuly, Yerassyl
collection PubMed
description [Image: see text] In this work, a complex experimental study of the effect of electron and proton ionizing radiation on the properties of carbon nanowalls (CNWs) is carried out using various state-of-the-art materials characterization techniques. CNW layers on quartz substrates were exposed to 5 MeV electron and 1.8 MeV proton irradiation with accumulated fluences of 7 × 10(13) e/cm(2) and 10(12) p/cm(2), respectively. It is found that depending on the type of irradiation (electron or proton), the morphology and structural properties of CNWs change; in particular, the wall density decreases, and the sp(2) hybridization component increases. The morphological and structural changes in turn lead to changes in the electronic, optical, and electrical characteristics of the material, in particular, change in the work function, improvement in optical transmission, an increase in the surface resistance, and a decrease in the specific conductivity of the CNW films. Lastly, this study highlights the potential of CNWs as nanostructured functional materials for novel high-performance radiation-resistant electronic and optoelectronic devices.
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spelling pubmed-97987662022-12-30 Effect of Electron and Proton Irradiation on Structural and Electronic Properties of Carbon Nanowalls Yerlanuly, Yerassyl Zhumadilov, Rakhymzhan Ye Danko, Igor V. Janseitov, Daniyar M. Nemkayeva, Renata R. Kireyev, Alexander V. Arystan, Aidana B. Akhtanova, Gulnur Vollbrecht, Joachim Schopp, Nora Nurmukhanbetova, Aliya Ramazanov, Tlekkabul S. Jumabekov, Askhat N. Oreshkin, Pavel A. Zholdybayev, Timur K. Gabdullin, Maratbek T. Brus, Viktor V. ACS Omega [Image: see text] In this work, a complex experimental study of the effect of electron and proton ionizing radiation on the properties of carbon nanowalls (CNWs) is carried out using various state-of-the-art materials characterization techniques. CNW layers on quartz substrates were exposed to 5 MeV electron and 1.8 MeV proton irradiation with accumulated fluences of 7 × 10(13) e/cm(2) and 10(12) p/cm(2), respectively. It is found that depending on the type of irradiation (electron or proton), the morphology and structural properties of CNWs change; in particular, the wall density decreases, and the sp(2) hybridization component increases. The morphological and structural changes in turn lead to changes in the electronic, optical, and electrical characteristics of the material, in particular, change in the work function, improvement in optical transmission, an increase in the surface resistance, and a decrease in the specific conductivity of the CNW films. Lastly, this study highlights the potential of CNWs as nanostructured functional materials for novel high-performance radiation-resistant electronic and optoelectronic devices. American Chemical Society 2022-12-12 /pmc/articles/PMC9798766/ /pubmed/36591155 http://dx.doi.org/10.1021/acsomega.2c06735 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Yerlanuly, Yerassyl
Zhumadilov, Rakhymzhan Ye
Danko, Igor V.
Janseitov, Daniyar M.
Nemkayeva, Renata R.
Kireyev, Alexander V.
Arystan, Aidana B.
Akhtanova, Gulnur
Vollbrecht, Joachim
Schopp, Nora
Nurmukhanbetova, Aliya
Ramazanov, Tlekkabul S.
Jumabekov, Askhat N.
Oreshkin, Pavel A.
Zholdybayev, Timur K.
Gabdullin, Maratbek T.
Brus, Viktor V.
Effect of Electron and Proton Irradiation on Structural and Electronic Properties of Carbon Nanowalls
title Effect of Electron and Proton Irradiation on Structural and Electronic Properties of Carbon Nanowalls
title_full Effect of Electron and Proton Irradiation on Structural and Electronic Properties of Carbon Nanowalls
title_fullStr Effect of Electron and Proton Irradiation on Structural and Electronic Properties of Carbon Nanowalls
title_full_unstemmed Effect of Electron and Proton Irradiation on Structural and Electronic Properties of Carbon Nanowalls
title_short Effect of Electron and Proton Irradiation on Structural and Electronic Properties of Carbon Nanowalls
title_sort effect of electron and proton irradiation on structural and electronic properties of carbon nanowalls
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9798766/
https://www.ncbi.nlm.nih.gov/pubmed/36591155
http://dx.doi.org/10.1021/acsomega.2c06735
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