Please use this identifier to cite or link to this item: http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/11379
Title: Activating lattice oxygen via proton-decoupled electron transfer in iron chromium phosphate for efficient (sea)water oxidation
Authors: Das, Chandni
KUMAR, HITESH
THOTIYL, MUSTHAFA OTTAKAM
Roy, Poulomi
Dept. of Chemistry
Keywords: Chemistry
2026-JUL-WEEK3
TOC-JUL-2026
2026
Issue Date: Jun-2026
Publisher: Royal Society of Chemistry
Citation: Journal of Materials Chemistry A
Abstract: Given the escalating freshwater scarcity crisis, seawater oxidation has emerged as a promising approach to advancing sustainable hydrogen production; however, its practical feasibility is severely hindered by pervasive chloride-induced corrosion. In this study, we develop an efficient FeCr-phosphate (FeCrPi) as an electrocatalyst by a simple solvothermal strategy, which exhibits superior oxygen evolution reaction (OER) activity in both alkaline freshwater and seawater. The rational design of FeCrPi affords dual advantages: phosphate groups promote the lattice oxygen mechanism (LOM), while the CrO42− species generated in situ during seawater oxidation adsorb onto the electrode surface, creating a protective layer that mitigates chloride corrosion, suppress the chlorine evolution reaction (CER), and enhance the OER selectivity. As a result, FeCrPi demonstrates excellent OER activity in alkaline freshwater and alkaline real seawater, achieving a high current density of 0.5 A cm−2 at 280 and 340 mV, respectively, and also maintaining an impressive stability over 100 h at a high applied potential of 2 V in real alkaline seawater. This work establishes a viable phosphate-engineering strategy for fabricating a highly efficient chloride-resistive electrocatalyst with OER selectivity, which enables LOM-assisted seawater oxidation.
URI: https://doi.org/10.1039/d6ta03572h
http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/11379
ISSN: 2050-7496
2050-7488
Appears in Collections:JOURNAL ARTICLES

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