Vinoth Kumar, S.H.B.; Ibaceta-Jaña, J.; Maticuic, N.; Kowiorski, K.; Zelt, M.; Gernert, U.; Lipińska, L.; Szyszka, B.; Schlatmann, R.; Hartmann, U.;
et al. Applicability of Atmospheric Pressure Plasma Jet (APPJ) Discharge for the Reduction in Graphene Oxide Films and Synthesis of Carbon Nanomaterials. C 2021, 7, 71.
https://doi.org/10.3390/c7040071
AMA Style
Vinoth Kumar SHB, Ibaceta-Jaña J, Maticuic N, Kowiorski K, Zelt M, Gernert U, Lipińska L, Szyszka B, Schlatmann R, Hartmann U,
et al. Applicability of Atmospheric Pressure Plasma Jet (APPJ) Discharge for the Reduction in Graphene Oxide Films and Synthesis of Carbon Nanomaterials. C. 2021; 7(4):71.
https://doi.org/10.3390/c7040071
Chicago/Turabian Style
Vinoth Kumar, Sri Hari Bharath, Josefa Ibaceta-Jaña, Natalia Maticuic, Krystian Kowiorski, Matthias Zelt, Ulrich Gernert, Ludwika Lipińska, Bernd Szyszka, Rutger Schlatmann, Uwe Hartmann,
and et al. 2021. "Applicability of Atmospheric Pressure Plasma Jet (APPJ) Discharge for the Reduction in Graphene Oxide Films and Synthesis of Carbon Nanomaterials" C 7, no. 4: 71.
https://doi.org/10.3390/c7040071
APA Style
Vinoth Kumar, S. H. B., Ibaceta-Jaña, J., Maticuic, N., Kowiorski, K., Zelt, M., Gernert, U., Lipińska, L., Szyszka, B., Schlatmann, R., Hartmann, U., & Muydinov, R.
(2021). Applicability of Atmospheric Pressure Plasma Jet (APPJ) Discharge for the Reduction in Graphene Oxide Films and Synthesis of Carbon Nanomaterials. C, 7(4), 71.
https://doi.org/10.3390/c7040071