
Pencil powered faradaic electrode for Li-ion capacitors with high energy and wide temperature operation
Pencil powered faradaic electrode for Li-ion capacitors with high energy and wide temperature operation.
Pencil powered faradaic electrode for Li-ion capacitors with high energy and wide temperature operation.
Saikia, U., Rychert, C. A., Harmon, N., & Kendall, J. M. (2021). Seismic attenuation at the
Natarajan, S., Divya, M. L., & Aravindan, V. (2022). Should we recycle the graphite from spent lithium-ion
Subramanyan, K., Akshay, M., Lee, Y-S., & Aravindan, V. (2022). Fabrication of Na-ion full-cells using carbon-coated Na3V2(PO4)2O2F
Chandrasekaran, S., Khandelwal, M., Dayong, F., … Aravindan, V., et al. (2022). Developments and perspectives on robust
Shadiya, K. P., Divya, M. L., Lee, Y-S., & Aravindan, V. (2022). Pencil scripted ultrathin graphene nanostructure
Akshay, M., Subramanyan, K., Divya, M. L., Lee, Y-S., & Aravindan, V. (2022). Choice of binder on
Na-ion battery with graphite anode and Na3V2(PO4)3 cathode via solvent-co-intercalation process
Pencil powered faradaic electrode for Li-ion capacitors with high energy and wide temperature operation.
V2O5 vs LiFePO4: Who is performing better in the 3.4 V class category? A performance evaluation in ”Rocking-chair” configuration with graphite anode
Composite solid electrolyte for high voltage solid-state Li-metal battery
Glyme solvated Na and Li-ion capacitors based on co-intercalation process using pencil graphite as battery type electrode