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Defect engineered dendritic fibrous nanosilica as prospective alloy anode for the fabrication of high-energy Li-ion capacitors with ultralong durability

Akshay, M., Belgamwar, R., Praneetha, S., Polshettiwar, V., & Aravindan, V. (2023). Defect engineered dendritic fibrous nanosilica as prospective alloy anode for the fabrication of high-energy Li-ion capacitors with ultralong durability. ACS Materials Letters, 5(3), 715-721. DOI: 10.1021/acsmaterialslett.2c01224

An order magnitude increase in energy of Li-ion capacitors by adopting combined insertion-conversion process with long durability and water soluble binder.

Akshay, M., Subramanyan, K., Lee, Y-S., & Aravindan, V. (2023). An order magnitude increase in energy of Li-ion capacitors by adopting combined insertion-conversion process with long durability and water soluble binder. Sustainable Materials and Technologies, 36. DOI: 10.1016/j.susmat.2023.e00603