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{"references": ["1.\tQ. Cheng, J. Tang, J. Ma, H. Zhang, N. Shinya, L.C. Qin. (2011) Physical Chemistry Chemical Physics, 39(13), 17615.", "2.\tA. Ansaldo, P.Bondavalli, S. Bellani, A. E. Del Rio Castillo, M Prato., V. Pellegrini, , F. Bonaccorso, (2017) ChemNanoMat., 6(3), 436.", "3.\tW. Guanghui, L. Ruiyi, L. Zaijun, L. Junkang, G. Zhiguo, W. Guangli, (2015) Electrochimica Acta., 171, 156.", "4.\tM. Terrones, A.R. Botello-M\u00e9ndez, J. Campos-Delgado, F. L\u00f3pez-Ur\u00edas, Y.I. Vega-Cant\u00fa, F.J. Rodr\u00edguez-Mac\u00edas, H. Terrones, (2010) Nano today, 4(5), 351.", "5.\tO.L. Riabokin, A.V. Boichuk, K.D. Pershina, (2018) Surf. Engin. Appl. Electrochem.,54(6), 614.", "6.\tO. Boichuk, K. Pershina, O. Riabokin, A. Kravchenko, R. Panteleimonov, (2020) Ukrainian Chemistry Journal, 86 (4), 108."]}
The conference paper of the 23rd ABAF International Conference, Brno, Czech Republic, August 2022
Graphene, capacitance, conductivity, surface charge distribution, Raman spectra
Graphene, capacitance, conductivity, surface charge distribution, Raman spectra
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