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

DOI: 10.1002/aenm.70564

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.