Benchmarking Stability of Iridium Oxide in Acidic Media under Oxygen Evolution Conditions: A Review: Part I

Author:

Murawski James1,Scott Soren B.1,Rao Reshma1,Rigg Katie2,Zalitis Chris2,Stevens James2,Sharman Jonathan2,Hinds Gareth3,Stephens Ifan E. L.1

Affiliation:

1. Department of Materials, Imperial College LondonExhibition Road, London, SW7 2AZUK

2. Johnson MattheyBlount’s Court, Sonning Common, Reading, RG4 9NHUK

3. National Physical LaboratoryTeddington, Middlesex, TW11 0LWUK

Abstract

State-of-the-art proton exchange membrane (PEM) electrolysers employ iridium-based catalysts to facilitate oxygen evolution at the anode. To enable scale-up of the technology to the terawatt level, further improvements in the iridium utilisation are needed, without incurring additional overpotential losses or reducing the device lifetime. The research community has only recently started to attempt systematic benchmarking of catalyst stability. Short term electrochemical methods alone are insufficient to predict catalyst degradation; they can both underestimate and overestimate catalyst durability. Complementary techniques, such as inductively coupled plasma-mass spectrometry (ICP-MS), are required to provide more reliable assessment of the amount of catalyst lost through dissolution. In Part I, we critically review the state of the art in probing degradation of iridium-based oxide catalysts.

Publisher

Johnson Matthey

Subject

Electrochemistry,Metals and Alloys,Process Chemistry and Technology

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