Physics‐Grounded Materials Artificial Intelligence for Reliable Materials Discovery
Physics‐Grounded Materials AI (PhysMat AI) integrates physical priors, descriptors, constraints, verification, and data infrastructure into a unified full‐stack framework, enabling reliable, interpretable, and autonomous AI‐driven materials discovery.
Yuhang Wang +3 more
wiley +1 more source
Successive ionic layer adsorption and reaction (SILAR) -driven cobalt oxide integration on pencil graphite for efficient electrochemical oxygen evolution reaction in alkaline medium. [PDF]
Rana M +9 more
europepmc +1 more source
One-Dimensional RuIrTe Nanotubes with Amorphous Surface as a Highly Active and Stable Electrocatalyst Toward Oxygen Evolution Reaction in Acidic Media. [PDF]
Zhao ZL +4 more
europepmc +1 more source
Tailoring Cobalt-Based Nanomaterials through Doping and Vacancy Engineering for Advanced Hydrogen Evolution Reaction (HER) and Oxygen Evolution Reaction (OER) Electrolysis. [PDF]
Ahmad M +9 more
europepmc +1 more source
Synergistic interface engineering of Ni-integrated Co-ZIF67 on two-demensional MXene for enhanced oxygen evolution reaction. [PDF]
Pashajavid S +8 more
europepmc +1 more source
Estimating Reaction Rate Constants from Impedance Spectra: Combining Microkinetic Modeling and Experiments of the Oxygen Evolution Reaction. [PDF]
van den Boorn BFH +7 more
europepmc +1 more source
A New Water-Soluble Copper(II) Coordination Polymer for Electrocatalytic Oxygen Evolution Reaction. [PDF]
Macedo RPP +4 more
europepmc +1 more source
Related searches:
Understanding of Oxygen Redox in the Oxygen Evolution Reaction
Advanced Materials, 2022AbstractThe electron‐transfer process during the oxygen evolution reaction (OER) often either proceeds solely via a metal redox chemistry (adsorbate evolution mechanism (AEM), with metal bands around the Fermi level) or an oxygen redox chemistry (lattice oxygen oxidation mechanism (LOM), with oxygen bands around the Fermi level).
Xiaopeng Wang +2 more
exaly +3 more sources
Bifunctional Catalysts for Reversible Oxygen Evolution Reaction and Oxygen Reduction Reaction
Chemistry - A European Journal, 2020AbstractMetal‐air batteries (MABs) and reversible fuel cells (RFCs) rely on the bifunctional oxygen catalysts for oxygen evolution reaction (OER) and oxygen reduction reaction (ORR). Finding efficient bifunctional oxygen catalysts is the ultimate goal and it has attracted a great deal of attention.
Shuangyin Wang, San Ping Jiang
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