Linge, P.U.; Gerges, T.; Bevilacqua, P.; Duchamp, J.-M.; Benech, P.; Verdier, J.; Lombard, P.; Cabrera, M.; Tsafack, P.; Mieyeville, F.;
et al. Evaluation of Polylactic Acid Polymer as a Substrate in Rectenna for Ambient Radiofrequency Energy Harvesting. J. Low Power Electron. Appl. 2023, 13, 34.
https://doi.org/10.3390/jlpea13020034
AMA Style
Linge PU, Gerges T, Bevilacqua P, Duchamp J-M, Benech P, Verdier J, Lombard P, Cabrera M, Tsafack P, Mieyeville F,
et al. Evaluation of Polylactic Acid Polymer as a Substrate in Rectenna for Ambient Radiofrequency Energy Harvesting. Journal of Low Power Electronics and Applications. 2023; 13(2):34.
https://doi.org/10.3390/jlpea13020034
Chicago/Turabian Style
Linge, Pangsui Usifu, Tony Gerges, Pascal Bevilacqua, Jean-Marc Duchamp, Philippe Benech, Jacques Verdier, Philippe Lombard, Michel Cabrera, Pierre Tsafack, Fabien Mieyeville,
and et al. 2023. "Evaluation of Polylactic Acid Polymer as a Substrate in Rectenna for Ambient Radiofrequency Energy Harvesting" Journal of Low Power Electronics and Applications 13, no. 2: 34.
https://doi.org/10.3390/jlpea13020034
APA Style
Linge, P. U., Gerges, T., Bevilacqua, P., Duchamp, J. -M., Benech, P., Verdier, J., Lombard, P., Cabrera, M., Tsafack, P., Mieyeville, F., & Allard, B.
(2023). Evaluation of Polylactic Acid Polymer as a Substrate in Rectenna for Ambient Radiofrequency Energy Harvesting. Journal of Low Power Electronics and Applications, 13(2), 34.
https://doi.org/10.3390/jlpea13020034