Abstract
AbstractWater is the only available fossil-free source of hydrogen. Splitting water electrochemically is among the most used techniques, however, it accounts for only 4% of global hydrogen production. One of the reasons is the high cost and low performance of catalysts promoting the oxygen evolution reaction (OER). Here, we report a highly efficient catalyst in acid, that is, solid-solution Ru‒Ir nanosized-coral (RuIr-NC) consisting of 3 nm-thick sheets with only 6 at.% Ir. Among OER catalysts, RuIr-NC shows the highest intrinsic activity and stability. A home-made overall water splitting cell using RuIr-NC as both electrodes can reach 10 mA cm−2geo at 1.485 V for 120 h without noticeable degradation, which outperforms known cells. Operando spectroscopy and atomic-resolution electron microscopy indicate that the high-performance results from the ability of the preferentially exposed {0001} facets to resist the formation of dissolvable metal oxides and to transform ephemeral Ru into a long-lived catalyst.
Funder
MEXT | JST | Accelerated Innovation Research Initiative Turning Top Science and Ideas into High-Impact Values
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry
Reference46 articles.
1. Seh, Z. W. et al. Combining theory and experiment in electrocatalysis: insights into materials design. Science 355, 4998 (2017).
2. Schalenbach, M., Zeradjajij, A., Kasian, O., Cherevko, S. & Mayrhofer, K. A perspective on low-temperature water electrolysis—challenges in alkaline and acidic technology. Int. J. Electrochem. Sci. 13, 1173–1226 (2018).
3. Wei, C. et al. Recommended practices and benchmark activity for hydrogen and oxygen electrocatalysis in water splitting and fuel cells. Adv. Mater. 31, e1806296 (2019).
4. Blasco-Ahicart, M., Soriano-López, J., Carbó, J., Poblet, J. & Galan-Mascaros, J. Polyoxometalate electrocatalysts based on earth-abundant metals for efficient water oxidation in acidic media. Nat. Chem. 10, 24–30 (2018).
5. Seitz, L. C. et al. A highly active and stable IrOx/SrIrO3 catalyst for the oxygen evolution reaction. Science 353, 1011–1014 (2016).
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