N. TURAN, "Dielectric behavior and AC conductivity mechanism of ZnCo2O4 ceramic nanoparticles as a function of frequency and temperature," JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS , vol.32, no.20, pp.25084-25093, 2021
TURAN, N. 2021. Dielectric behavior and AC conductivity mechanism of ZnCo2O4 ceramic nanoparticles as a function of frequency and temperature. JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS , vol.32, no.20 , 25084-25093.
TURAN, N., (2021). Dielectric behavior and AC conductivity mechanism of ZnCo2O4 ceramic nanoparticles as a function of frequency and temperature. JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS , vol.32, no.20, 25084-25093.
TURAN, NESLİHAN. "Dielectric behavior and AC conductivity mechanism of ZnCo2O4 ceramic nanoparticles as a function of frequency and temperature," JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS , vol.32, no.20, 25084-25093, 2021
TURAN, NESLİHAN. "Dielectric behavior and AC conductivity mechanism of ZnCo2O4 ceramic nanoparticles as a function of frequency and temperature." JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS , vol.32, no.20, pp.25084-25093, 2021
TURAN, N. (2021) . "Dielectric behavior and AC conductivity mechanism of ZnCo2O4 ceramic nanoparticles as a function of frequency and temperature." JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS , vol.32, no.20, pp.25084-25093.
@article{article, author={NESLİHAN TURAN}, title={Dielectric behavior and AC conductivity mechanism of ZnCo2O4 ceramic nanoparticles as a function of frequency and temperature}, journal={JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS}, year=2021, pages={25084-25093} }