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PHOTOCONDUCTIVITY ANALYSIS OF CARBON NANOTUBES FUNCTIONALIZED WITH A CARBOXYL GROUP
Опубліковано 05.03.2023
Як цитувати
Abaszade , R. (2023). PHOTOCONDUCTIVITY ANALYSIS OF CARBON NANOTUBES FUNCTIONALIZED WITH A CARBOXYL GROUP. Матеріали конференцій МЦНД, (24.02.2023; Київ, Україна), 151–152. вилучено із https://archive.mcnd.org.ua/index.php/conference-proceeding/article/view/431
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Анотація
In recent years, quantum systems have been investigated as a new scientific direction in the world [10-11]. Getting graphene-based samples is even more interesting. Graphene oxide sample was obtained by Hummer method. Then, the physical and chemical properties of the obtained samples were investigated, as well as mathematical modeling of the obtained graphs was performed [1-9].
Посилання
- A.Singh, A. Sharma, A. Ahmed, A.K. Sundramoorthy, H.Furukawa, S.Arya, A.Khosla, 2021. Recent Advances in Electrochemical Biosensors: Applications, Challenges, and Future Scope, Biosensors, 11, P.336. https://doi.org/10.3390/bios11090336.
- V.M. Boychuk, R.I. Zapukhlyak, R.G. Abaszade, V.O. Kotsyubynsky, M.A. Hodlevsky, B.I. Rachiy, L.V. Turovska, A.M. Dmytriv S.V. Fedorchenko, 2022. Solution combustion synthesized NiFe2O4/reduced graphene oxide composite nanomaterials: morphology and electrical conductivity, Physics and Chemistry of Solid State, 23, No.4, P.815-824. https://doi.org/ 10.15330/pcss.23.4.815-824.
- R.G. Abaszade, 2022. Synthesis and analysis of flakes graphene oxide, Journal of Optoelectronic and Biomedical Materials, 14, No.3, P.107–114. https://doi.org/10.15251/JOBM.2022.143.107.
- R.G. Abaszade, S.A. Mamedova, F.H. Agayev, S.I. Budzulyak, O.A. Kapush, M.A. Mamedova, A.M. Nabiyev, V.O. Kotsyubynsky, 2021. Synthesis and Characterization of Graphene Oxide Flakes for Transparent Thin Films, Physics and Chemistry of Solid State, 22, No.3, P.595-601. https://doi.org/10.15330/pcss.22.3.595-601.
- R.G. Abaszade, A.G. Mammadov, I.Y.Bayramov, E.A.Khanmamadova, V.O. Kotsyubynsky, O.A. Kapush, V.M. Boychuk, E.Y. Gur, 2022. Structural and Electrical Properties of the Sulfur-Doped Graphene Oxide/Graphite Oxide Nanocomposite, Physics and Chemistry of Solid State, 23, No.2, P.256-260. https://doi.org/10.15330/pcss.23.2.256-260.
- S.R. Figarova, E.M. Aliyev, R.G. Abaszade, R.I. Alekberov, V.R. Figarov, 2021. Negative Differential Resistance of Graphene Oxide/Sulphur Compound, Journal of Nano Research Submitted, 67, P.25-31. https://www.scientific.net/JNanoR.67.25.
- R.G. Abaszade, A.G. Mammadov, V.O. Kotsyubynsky, E.Y. Gür, I.Y. Bayramov, E.A. Khanmamadova, O.A. Kapush, 2022. Modeling of voltage-ampere characteristic structures on the basis of grapheme oxide/sulfur compounds, International Journal on Technical and Physical Problems of Engineering, 14, No.2, P.302-306. http://www.iotpe.com/IJTPE/IJTPE-JournalIssues.html.
- A.Singh, A. Ahmed, A. Sharma, S. Arya, 2022. Graphene and its derivatives: synthesis and application in the electrochemical detection of analytes in sweat, Biosensors, 12, P.910. https://doi.org/10.3390/bios12100910.
- O.O. Voitsihovska, R.M. Rudenko, V.Y. Povarchuk, A.A. Abakumov, I.B. Bychko, M.O. Stetsenki, M.P. Rudenko, 2019. The effect of electron irradiation on the electrical properties of reduced graphene oxide paper, Materials letters, 236, pp.334-336, 2019. https://doi.org/10.1016/j. matlet.2018.10.119.
- R.A. Namazov, R.G. Abaszade, “Properties of graphene based solar panels (review)”, Ecoenergetics, No.1, pp.3-8, 2022. http://ieeacademy.org/wp-content/uploads/2022/05/ ECOENERGETS-JOURNAL.
- Kh.M. Popal, R.G. Abaszade, “Research and modeling of hybrid energy systems (review)”, Ecoenergetics, No.1, pp.65-69, 2022. http://ieeacademy.org/wp-content/ uploads/2022/05/ ECOENERGETS-JOURNAL.
- R.G. Abaszade, O.A. Kapush, A.M. Nabiyev, 2020. Properties of carbon nanotubes doped with gadolinium”, Journal of Optoelectronic and Biomedical Materials, 12, No.3, P.61–65. https://chalcogen.ro/107_AbaszadeRG.pdf.
- R.G. Abaszade, O.A. Kapush, S.A. Mamedova, A.M. Nabiyev, S.Z. Melikova, S.I. Budzulyak, 2020. Gadolinium doping influence on the properties of carbon nanotubes, Physics and Chemistry of Solid State, 21, No.3, P.404-408.
- A.G. Mammadov, R.G. Abaszade, V.O. Kotsyubynsky, E.Y. Gür, I.Y. Bayramov, E.A. Khanmamadova, O.A. Kapush, 2022. Photoconductivity of carbon nanotubes, International Journal on Technical and Physical Problems of Engineering, Issue 51, 14, No.3, P.155-160. http://www.iotpe.com/IJTPE/IJTPE-JournalIssues.html.
- J.Wang, J. Han, X. Chen, X. Wang, 2019. Design strategies for two-dimensional material photo-detectors to enhance device performance, InfoMat, 33, No.1, P.1-21.