IrOx core-shell nanocatalysts for cost- and energy-efficient electrochemical water splitting

308Citations
Citations of this article
247Readers
Mendeley users who have this article in their library.

Abstract

A family of dealloyed metal-oxide hybrid (M1M2@M 1Ox) core@shell nanoparticle catalysts is demonstrated to provide substantial advances toward more efficient and less expensive electrolytic water splitting. IrNi@IrOx nanoparticles were synthesized from IrNix precursor alloys through selective surface Ni dealloying and controlled surface oxidation of Ir. Detailed depth-resolved insight into chemical structure, composition, morphology, and oxidation state was obtained using spectroscopic, diffraction, and scanning microscopic techniques (XANES, XRD, STEM-EDX, XPS), which confirmed our structural hypotheses at the outset. A 3-fold catalytic activity enhancement for the electrochemical oxygen evolution reaction (OER) over IrO2 and RuO2 benchmark catalysts was observed for the core-shell catalysts on a noble metal mass basis. Also, the active site-based intrinsic turnover frequency (TOF) was greatly enhanced for the most active IrNi@IrOx catalyst. This study documents the successful use of synthetic dealloying for the preparation of metal-oxide hybrid core-shell catalysts. The concept is quite general, can be applied to other noble metal nanoparticles, and points out a path forward to nanostructured proton-exchange-electrolyzer electrodes with dramatically reduced noble metal content. © the Partner Organisations 2014.

Cite

CITATION STYLE

APA

Nong, H. N., Gan, L., Willinger, E., Teschner, D., & Strasser, P. (2014). IrOx core-shell nanocatalysts for cost- and energy-efficient electrochemical water splitting. Chemical Science, 5(8), 2955–2963. https://doi.org/10.1039/c4sc01065e

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free