An efficient nickel hydrogen oxidation catalyst for hydroxide exchange membrane fuel cells

Weiyan Ni, Teng Wang, Florent Héroguel, Anna Krammer, Seunghwa Lee, Liang Yao, Andreas Schüler, Jeremy S. Luterbacher, Yushan Yan, Xile Hu

Research output: Contribution to journalArticlepeer-review

165 Scopus citations

Abstract

The hydroxide exchange membrane fuel cell (HEMFC) is a promising energy conversion technology but is limited by the need for platinum group metal (PGM) electrocatalysts, especially for the hydrogen oxidation reaction (HOR). Here we report a Ni-based HOR catalyst that exhibits an electrochemical surface area-normalized exchange current density of 70 μA cm2, the highest among PGM-free catalysts. The catalyst comprises Ni nanoparticles embedded in a nitrogen-doped carbon support. According to X-ray and ultraviolet photoelectron spectroscopy as well as H2 chemisorption data, the electronic interaction between the Ni nanoparticles and the support leads to balanced hydrogen and hydroxide binding energies, which are the likely origin of the catalyst’s high activity. PGM-free HEMFCs employing this Ni-based HOR catalyst give a peak power density of 488 mW cm2, up to 6.4 times higher than previous best-performing analogous HEMFCs. This work demonstrates the feasibility of efficient PGM-free HEMFCs.

Original languageEnglish
Pages (from-to)804-810
Number of pages7
JournalNature Materials
Volume21
Issue number7
DOIs
StatePublished - Jul 2022
Externally publishedYes

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