Soft chemistry of ion-exchangeable layered metal oxides

R Uppuluri, AS Gupta, AS Rosas… - Chemical Society …, 2018 - pubs.rsc.org
Soft chemical reactions such as ion-exchange and acid–base reactions have been
extensively investigated to synthesize novel metastable layered inorganic solids, to exfoliate …

Iridium metallene oxide for acidic oxygen evolution catalysis

Q Dang, H Lin, Z Fan, L Ma, Q Shao, Y Ji… - Nature …, 2021 - nature.com
Exploring new materials is essential in the field of material science. Especially, searching for
optimal materials with utmost atomic utilization, ideal activities and desirable stability for …

Highly active and stable OER electrocatalysts derived from Sr2MIrO6 for proton exchange membrane water electrolyzers

M Retuerto, L Pascual, J Torrero, MA Salam… - Nature …, 2022 - nature.com
Proton exchange membrane water electrolysis is a promising technology to produce green
hydrogen from renewables, as it can efficiently achieve high current densities. Lowering …

Iridium oxide fabrication and application: A review

H Jang, J Lee - Journal of Energy Chemistry, 2020 - Elsevier
Despite the scarcity and cost of iridium oxide, it is still the material of choice in numerous
fields of science and applications, including capacitors, electrochromism, sensors, and …

A unique oxygen ligand environment facilitates water oxidation in hole-doped IrNiOx core–shell electrocatalysts

HN Nong, T Reier, HS Oh, M Gliech, P Paciok… - Nature Catalysis, 2018 - nature.com
The electro-oxidation of water to oxygen is expected to play a major role in the development
of future electrochemical energy conversion and storage technologies. However, the slow …

A highly active, long‐lived oxygen evolution electrocatalyst derived from open‐framework iridates

L Yang, L Shi, H Chen, X Liang, B Tian… - Advanced …, 2023 - Wiley Online Library
The acidic oxygen evolution reaction underpins several important electrical‐to‐chemical
energy conversions, and this energy‐intensive process relies industrially on iridium‐based …

Lattice site–dependent metal leaching in perovskites toward a honeycomb-like water oxidation catalyst

Y Chen, Y Sun, M Wang, J Wang, H Li, S Xi, C Wei… - Science …, 2021 - science.org
Metal leaching during water oxidation has been typically observed in conjunction with
surface reconstruction on perovskite oxide catalysts, but the role of metal leaching at each …

Surface electron-hole rich species active in the electrocatalytic water oxidation

JJ Velasco-Vélez, EA Carbonio… - Journal of the …, 2021 - ACS Publications
Iridium and ruthenium and their oxides/hydroxides are the best candidates for the oxygen
evolution reaction under harsh acidic conditions owing to the low overpotentials observed …

Ruthenium oxide nanosheets for enhanced oxygen evolution catalysis in acidic medium

S Laha, Y Lee, F Podjaski, D Weber… - Advanced Energy …, 2019 - Wiley Online Library
The fabrication of highly active and robust hexagonal ruthenium oxide nanosheets for the
electrocatalytic oxygen evolution reaction (OER) in an acidic environment is reported. The …

Optimizing Edge Active Sites via Intrinsic In‐Plane Iridium Deficiency in Layered Iridium Oxides for Oxygen Evolution Electrocatalysis

L Wang, R Du, X Liang, Y Zou, X Zhao… - Advanced …, 2024 - Wiley Online Library
Improving catalytic activity of surface iridium sites without compromising catalytic stability is
the core task of designing more efficient electrocatalysts for oxygen evolution reaction (OER) …