Seunghwan Jo, O. Yildiz, Hyun-Sik Kim, Liting Zhang, K. Shin, S. Kwon, K. Lee, Paul Simon, Umut Aydemir, G. W. Ho, J. Sohn
2026.3.1Advanced Energy Materials
Abstract
Energy Storage In article number e05195, Umut Aydemir, Ghim Wei Ho, Jung Inn Sohn, and co-workers propose aqueous LiOH chemistry for efficient electrochemical energy storage. The hierarchically assembled hydrogenated borophene/cobalt-nickel compound stores energy from lithiation and subsequent protonation, associated with lattice oxygen redox at the oxygen nonbonding state, for a novel energy storage mechanism following LiOH chemistry in aqueous electrolyte.
Citation format
JO, Seunghwan, et al. Aqueous lithium hydroxide chemistry based on hierarchically assembled hydrogenated borophene/cobalt‐nickel compounds for rechargeable high‐performance supercapattery (adv. energy mater. 9/2026). Advanced Energy Materials, 2026.