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Shifting Oxygen Evolution Reaction Pathway via Activating Lattice Oxygen in Layered Perovskite Oxide
Advanced Functional Materials, 2023Developing high‐performance oxygen evolution reaction (OER) catalysts are critical for the practical application of many electrochemical energy devices.
Chenghao Jia +9 more
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Manganese-based oxides Electrocatalysts for the Oxygen Evolution Reaction: A Review
Journal of Materials Chemistry A, 2023Oxygen evolution reaction (OER), as an essential process in water decomposition and air batteries, has received increasing attention in the context of clean energy production and efficient energy storage.
Peng Wang +8 more
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Cobalt-based derivatives oxygen evolution reaction
Applied Nanoscience, 2021Co-based compounds such as Co3O4, CoS, and CoSe2 were produced via uncomplicated hydrothermal technique. The cubic, hexagonal, and orthorhombic phases of various products were revealed employing X-ray diffraction spectra. The scanning electron microscope images revealed different nanostructures, such as triangular Co3O4 nanoplates, flower-like CoS ...
S. Swathi +7 more
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Advanced Energy Materials, 2022
Oxygen evolution reaction (OER), as a relevant half reaction for water splitting to address the energy crisis, has captured a great deal of attention.
Tianqi Guo, Lidong Li, Zhongchang Wang
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Oxygen evolution reaction (OER), as a relevant half reaction for water splitting to address the energy crisis, has captured a great deal of attention.
Tianqi Guo, Lidong Li, Zhongchang Wang
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CoHPi Nanoflakes for Enhanced Oxygen Evolution Reaction
ACS Applied Materials & Interfaces, 2018Electrochemical splitting of water to produce hydrogen and oxygen is an important process for many energy storage and conversion devices. Developing efficient, robust, low-cost, and earth-abundant electrocatalysts for the oxygen evolution reaction (OER) is therefore of great importance. Herein, we report a novel method to prepare two-dimensional cobalt
Jingjing Wang, Hua Chun Zeng
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Electrocatalysts for Oxygen Evolution Reaction in Acidic Media.
Advances in Materials, 2022Water electrolysis is one of the most efficient and environmentally benign methods for the hydrogen production using renewable but intermittent power sources.
Yichao Lin +3 more
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2020
Oxygen evolution reaction is evinced as one of the main rate-determining steps for clean energy production, energy security supply and therefore for the evolution of a sustainable society. The production of clean energy, the security of energy supply (autonomy) and lower cost of energy supply constitute the main key points for a sustainable future.
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Oxygen evolution reaction is evinced as one of the main rate-determining steps for clean energy production, energy security supply and therefore for the evolution of a sustainable society. The production of clean energy, the security of energy supply (autonomy) and lower cost of energy supply constitute the main key points for a sustainable future.
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Lattice Oxygen Redox Mechanisms in the Alkaline Oxygen Evolution Reaction
Advanced Functional MaterialsUnderstanding of fundamental mechanism and kinetics of the oxygen evolution reaction (OER) is pivotal for designing efficient OER electrocatalysts owing to its key role in electrochemical energy conversion devices.
Xiangrong Ren +4 more
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Recent Progress in Advanced Electrocatalyst Design for Acidic Oxygen Evolution Reaction
Advances in Materials, 2021Proton exchange membrane (PEM) water electrolyzers hold great significance for renewable energy storage and conversion. The acidic oxygen evolution reaction (OER) is one of the main roadblocks that hinder the practical application of PEM water ...
Leigang Li +3 more
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Carbon-Free Electrocatalyst for Oxygen Reduction and Oxygen Evolution Reactions
ACS Applied Materials & Interfaces, 2015A nanoporous Ag-embedded SnO2 thin film was fabricated by anodic treatment of electrodeposited Ag-Sn alloy layers. The ordered nanoporous structure formed by anodization played a key role in enhancing the electrocatalytic performance of the Ag-embedded SnO2 layer in several ways: (1) the roughness factor of the thin film is greatly increased from 23 in
Yang, Yang +6 more
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