Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 53 checked references that resolve
resolves10.1002/chem.201503580Solar Electricity and Solar Fuels: Status and Perspectives in the Context of the Energy Transition
resolves10.1021/acs.chemmater.5b03148Oxygen Evolution Reaction Electrocatalysis on Transition Metal Oxides and (Oxy)hydroxides: Activity Trends and Design Principles
resolves10.1021/jp409675zMeasuring the Proton Conductivity of Ion-Exchange Membranes Using Electrochemical Impedance Spectroscopy and Through-Plane Cell
resolves10.1149/2.0211512jesCalculating the Electrochemically Active Surface Area of Iridium Oxide in Operating Proton Exchange Membrane Electrolyzers
resolves10.1149/1.3484496Research Advances towards Low Cost, High Efficiency PEM Electrolysis
resolves10.1002/aenm.201600379A Stabilized, Intrinsically Safe, 10% Efficient, Solar‐Driven Water‐Splitting Cell Incorporating Earth‐Abundant Electrocatalysts with Steady‐State pH Gradients and Product Separation Enabled by a Bipolar Membrane
resolves10.1039/C5TA01771HPyrochlore electrocatalysts for efficient alkaline water electrolysis
resolves10.1039/c2ee22146bFirst implementation of alkaline polymer electrolyte water electrolysis working only with pure water
resolves10.1002/anie.201308099Highly Efficient Platinum Group Metal Free Based Membrane‐Electrode Assembly for Anion Exchange Membrane Water Electrolysis
resolves10.1038/nmat4938Dynamic surface self-reconstruction is the key of highly active perovskite nano-electrocatalysts for water splitting
resolves10.1016/j.apcatb.2014.02.021Development of a membrane electrode assembly for alkaline water electrolysis by direct electrodeposition of nickel on carbon papers
resolves10.1149/04523.0121ecstCharacterization of Anion Exchange Membrane Technology for Low Cost Electrolysis
resolves10.1039/c1jm11312gCuxCo3−xO4 (0 ≤x < 1) nanoparticles for oxygen evolution in high performance alkaline exchange membrane water electrolysers
resolves10.1039/C5RA01123JFabrication of spinel ferrite based alkaline anion exchange membrane water electrolysers for hydrogen production
resolves10.1016/j.ijhydene.2012.03.116A quaternary ammonium grafted poly vinyl benzyl chloride membrane for alkaline anion exchange membrane water electrolysers with no-noble-metal catalysts
resolves10.1016/j.jpowsour.2012.03.069A polymethacrylate-based quaternary ammonium OH− ionomer binder for non-precious metal alkaline anion exchange membrane water electrolysers
resolves10.1016/j.nanoen.2014.10.019Integrated inorganic membrane electrode assembly with layered double hydroxides as ionic conductors for anion exchange membrane water electrolysis
resolves10.1149/2.049311jesBest Practices for Investigating Anion Exchange Membrane Suitability for Alkaline Electrochemical Devices: Case Study Using Quaternary Ammonium Poly(2,6-dimethyl 1,4-phenylene)oxide Anion Exchange Membranes
resolves10.1088/0957-4484/18/43/435602A facile route to controlled synthesis of Co<sub>3</sub>O<sub>4</sub>nanoparticles and their environmental catalytic properties
resolves10.1021/cr00014a006Measurement of interfacial processes at electrode surfaces with the electrochemical quartz crystal microbalance
resolves10.1039/c3ra46630bDegradation of anion exchange membranes used for hydrogen production by ultrapure water electrolysis
resolves10.1021/ja307507aSolution-Cast Metal Oxide Thin Film Electrocatalysts for Oxygen Evolution
resolves10.1021/ja502379cNickel–Iron Oxyhydroxide Oxygen-Evolution Electrocatalysts: The Role of Intentional and Incidental Iron Incorporation
resolves10.1149/1.2096717Effect of Coprecipitated Metal Ions on the Electrochemistry of Nickel Hydroxide Thin Films: Cyclic Voltammetry in 1M KOH
resolves10.1021/acscatal.5b02924Effects of Intentionally Incorporated Metal Cations on the Oxygen Evolution Electrocatalytic Activity of Nickel (Oxy)hydroxide in Alkaline Media
resolves10.1021/jp710675mMetal Oxide Catalysts for the Evolution of O<sub>2</sub> from H<sub>2</sub>O
resolves10.1038/nmat3313Trends in activity for the water electrolyser reactions on 3d M(Ni,Co,Fe,Mn) hydr(oxy)oxide catalysts
resolves10.1021/acs.chemmater.5b03404Fe (Oxy)hydroxide Oxygen Evolution Reaction Electrocatalysis: Intrinsic Activity and the Roles of Electrical Conductivity, Substrate, and Dissolution
resolves10.1021/ja104672nEffect of Water Electrolysis Catalysts on Carbon Corrosion in Polymer Electrolyte Membrane Fuel Cells
resolves10.1149/1.1838637Surface Studies of Cu x Co3 − x O 4 Electrodes for the Electrocatalysis of Oxygen Evolution
resolves10.1021/jacs.5b00281Cobalt–Iron (Oxy)hydroxide Oxygen Evolution Electrocatalysts: The Role of Structure and Composition on Activity, Stability, and Mechanism
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