Lithium-ion battery waste as a robust oxygen evolution reaction electrocatalyst for seawater splitting

M Magdalena Warczak K Katarzyna Belka W Weronika Urbańska M Monika Michalska N Njemuwa Nwaji M Magdalena Osial

Abstract

Abstract Electrocatalytic seawater splitting seems to be the most promising and urgent demand strategy for clean hydrogen energy production. Utilizing low-cost electrocatalysts is pivotal in the hydrogen economy, as seawater splitting can be made highly efficient and more economical. To meet these expectations, we proposed a novel utilization for the black carbon mass left over from hydrometallurgical metal recovery as an efficient and stable electrocatalyst for oxygen evolution reaction (OER) performed in alkaline media. The SEM-EDS, XPS, XRD, XRF, and Raman analyses revealed that the composition and structure of the post-leached battery powders depend on the hydrometallurgical waste recycling conditions, which in turn affect their OER electrocatalytic activity. In particular, the material leached with sulfuric acid (BAT 1) retained a higher content of cobalt-based compounds (mainly LiCoO 2 and Co 3 O 4 ) embedded within a porous carbon matrix and, resulting in the best catalytic performance among all samples. The enhanced performance of BAT 1 is attributed to the synergy of its cobalt-based phases and the well-developed porous carbon structure, which collectively result in a high electrochemically active surface area. The electrochemical tests proved that Li-ion battery waste has remarkable OER catalytic performance with an overpotential of 226 mV and 225 mV, reaching 10 mA cm − 2 in water splitting and in seawater splitting, respectively, which is only 14 mV and 95 mV higher than for benchmark RuO 2 in water splitting and seawater splitting, respectively.

Article Details

Volume / Issue Vol. 16, Issue 1
Published January 12, 2026
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (6)

M

Magdalena Warczak

K

Katarzyna Belka

W

Weronika Urbańska

M

Monika Michalska

N

Njemuwa Nwaji

M

Magdalena Osial