This research focuses on testing the performance of sodium-ion batteries using variations in NaNO₃ electrolyte concentrations (1M and 4M) and solvent types (H₂O and DMSO), with the aim of determining the most effective combination. The objective of this study is to analyze the electrochemical characterization of TiO₂/NaNiPO₄ electrodes and to assess the influence of solvent and electrol…
This research uses SnO₂ powder as the anode and NaFePO₄ powder was synthesized using the sol-gel method as the cathode, combined with binchotan carbon, PANi, and DMSO solvent, stirred until forming a paste, which was then coated and dried to form a thin sheet. NaNO₃ salt was used as the electrolyte with varying concentrations, while DMSO and H₂O. The results of characterization using SE…
Electrolyte variations used in LiSnO2/LiFePO4 battery are LiCl and NaNO3 with 2 types of solvents namely H2O and DMSO. This research aims to analyze the results of characterization of LiSnO2/LiFePO4 electrodes and the effect of electrolytes and solvents on the performance of lithium ion battery with LiSnO2/LiFePO4 electrodes. The results of electrode characterization using SEM show that LiSnO2 …
Every human need today can not be separated from electrical energy. However, conventional energy sources are currently running low. One way to overcome this is to use alternative energy, one of which is river waves. The Musi River has great energy potential as seen from the large number of waves it produces. Therefore, Pembangkit Listrik Tenaga Gelombang Sungai (PLTGS) can be a solution to this…