@article{Pratheepa2021spqeo24n2p115,
  title = {Conversion of Lagenaria Siceraria peel to reduced graphene oxide doped with zinc oxide nanoparticles for supercapacitor applications},
  author = {Pratheepa, M.I. and Lawrence, M.},
  journal = {Semiconductor Physics, Quantum Electronics \& Optoelectronics},
  volume = {24},
  number = {2},
  pages = {115--123},
  year = {2021},
  doi = {10.15407/spqeo24.02.115},
  url = {https://doi.org/10.15407/spqeo24.02.115},
  abstract = {Graphene oxide was derived from Lagenaria Siceraria peel and the ZnO nanoparticles were synthesized using the green synthesis method. Zn1–xO-rGOx was synthesized with different concentrations (x = 0.1, 0.2, 0.3) that were referred as S1, S2, and S3, respectively. The rGO-ZnO nanoparticles have been characterized with XRD, DLS, zeta potential, FTIR, FT-Raman, UV, SEM, TEM, EDAX and mapping analysis. The charge storage, cycle stability of the rGO-ZnO nanoparticles were explored using cyclic voltammetry. The highest specific capacitance for nanoparticles was determined to be 371, 382 and 398 F/g for S1, S2, and S3 at the scan rate close to 10 mV/s.},
  keywords = {natural Lagenaria Siceraria peel, rGO-ZnO, green synthesis, electrochemical property, supercapacitor applications}
}
