Every reference with a DOI in the deposited reference list resolved to a known
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withdrawal, or removal notice.
The 59 checked references that resolve
resolves10.1038/s41929-020-0446-9Lattice-confined Ru clusters with high CO tolerance and activity for the hydrogen oxidation reaction
resolves10.1039/C7TA08718GPlatinum group metal-free NiMo hydrogen oxidation catalysts: high performance and durability in alkaline exchange membrane fuel cells
resolves10.1002/ange.202013047Alloying Nickel with Molybdenum Significantly Accelerates Alkaline Hydrogen Electrocatalysis
resolves10.1038/s41467-020-19413-5A highly-active, stable and low-cost platinum-free anode catalyst based on RuNi for hydroxide exchange membrane fuel cells
resolves10.1039/C3EE43899FNon-precious metal electrocatalysts with high activity for hydrogen oxidation reaction in alkaline electrolytes
resolves10.1038/s41467-020-18585-4Bimetallic nickel-molybdenum/tungsten nanoalloys for high-efficiency hydrogen oxidation catalysis in alkaline electrolytes
resolves10.1002/cssc.201800856Platinum Nanostructure/Nitrogen‐Doped Carbon Hybrid: Enhancing its Base Media HER/HOR Activity through Bi‐functionality of the Catalyst
resolves10.1002/anie.201916314Efficient Hydrogen Oxidation Catalyzed by Strain‐Engineered Nickel Nanoparticles
resolves10.1002/anie.201902751Ni<sub>3</sub>N as an Active Hydrogen Oxidation Reaction Catalyst in Alkaline Medium
resolves10.1038/s41467-018-06728-7Interfacing nickel nitride and nickel boosts both electrocatalytic hydrogen evolution and oxidation reactions
resolves10.1002/ange.201908194Boosting Hydrogen Oxidation Activity of Ni in Alkaline Media through Oxygen‐Vacancy‐Rich CeO<sub>2</sub>/Ni Heterostructures
resolves10.1002/ange.201905430Enhanced Electrocatalytic Hydrogen Oxidation on Ni/NiO/C Derived from a Nickel‐Based Metal–Organic Framework
resolves10.1038/nchem.1574Improving the hydrogen oxidation reaction rate by promotion of hydroxyl adsorption
resolves10.1038/ncomms6848Correlating hydrogen oxidation and evolution activity on platinum at different pH with measured hydrogen binding energy
resolves10.1021/jacs.7b00765Investigating the Influences of the Adsorbed Species on Catalytic Activity for Hydrogen Oxidation Reaction in Alkaline Electrolyte
resolves10.1039/C6CC07049CGraphitic carbon nitride supported single-atom catalysts for efficient oxygen evolution reaction
resolves10.1021/acsenergylett.9b00738Interfacial Sites between Cobalt Nitride and Cobalt Act as Bifunctional Catalysts for Hydrogen Electrochemistry
resolves10.1002/adfm.201805641Co<sub>2</sub>P–CoN Double Active Centers Confined in N‐Doped Carbon Nanotube: Heterostructural Engineering for Trifunctional Catalysis toward HER, ORR, OER, and Zn–Air Batteries Driven Water Splitting
resolves10.1039/C8CY00571KJanus CoN/Co cocatalyst in porous N-doped carbon: toward enhanced catalytic activity for hydrogen evolution
resolves10.1002/smll.202005184Ni<sub>17</sub>W<sub>3</sub>–W Interconnected Hybrid Prepared by Atmosphere‐ and Thermal‐Induced Phase Separation for Efficient Electrocatalysis of Alkaline Hydrogen Evolution
resolves10.1038/2241299b0Tungsten Carbide Electrodes for Fuel Cells with Acid Electrolyte
resolves10.1002/adma.201802880Structural Design and Electronic Modulation of Transition‐Metal‐Carbide Electrocatalysts toward Efficient Hydrogen Evolution
resolves10.1021/cs500182hTrends in Electrochemical Stability of Transition Metal Carbides and Their Potential Use As Supports for Low-Cost Electrocatalysts
resolves10.1016/j.jcat.2015.05.020Fischer–Tropsch synthesis over early transition metal carbides and nitrides: CO activation and chain growth
resolves10.1103/PhysRevB.54.11169Efficient iterative schemes for<i>ab initio</i>total-energy calculations using a plane-wave basis set
resolves10.1016/0927-0256(96)00008-0Efficiency of ab-initio total energy calculations for metals and semiconductors using a plane-wave basis set
resolves10.1063/1.472933Rationale for mixing exact exchange with density functional approximations
resolves10.1002/jcc.20495Semiempirical GGA‐type density functional constructed with a long‐range dispersion correction
resolves10.1186/s13065-019-0600-0Electrodeposition of amorphous molybdenum sulfide thin film for electrochemical hydrogen evolution reaction
resolves10.1016/j.elspec.2015.02.006Determination of the cation site distribution of the spinel in multiferroic CoFe 2 O 4 /BaTiO 3 layers by X-ray photoelectron spectroscopy
resolves10.1021/acscatal.7b01671Enhancing Selective Photooxidation through Co–Nx-doped Carbon Materials as Singlet Oxygen Photosensitizers
resolves10.1016/j.nanoen.2019.104335Eutectoid-structured WC/W2C heterostructures: A new platform for long-term alkaline hydrogen evolution reaction at low overpotentials
resolves10.1016/j.jcat.2020.07.023Co2P/CoP hybrid as a reversible electrocatalyst for hydrogen oxidation/evolution reactions in alkaline medium
resolves10.1149/2.066205jesAnalysis of Surface Oxidation on Pt and Pt Core-Shell Electrocatalysts for PEFCs
resolves10.1021/acsenergylett.0c00642Electron Density Modulation of Metallic MoO<sub>2</sub> by Ni Doping to Produce Excellent Hydrogen Evolution and Oxidation Activities in Acid
resolves10.1039/C7TA01957BHeteroatoms dual doped porous graphene nanosheets as efficient bifunctional metal-free electrocatalysts for overall water-splitting
resolves10.1039/C7CY00384FNitrogen and fluorine dual-doped porous graphene-nanosheets as efficient metal-free electrocatalysts for hydrogen-evolution in acidic media
resolves10.1016/j.ijhydene.2020.01.132Hydrogen evolution reaction in full pH range on nickel doped tungsten carbide nanocubes as efficient and durable non-precious metal electrocatalysts
resolves10.1038/nmat1752Computational high-throughput screening of electrocatalytic materials for hydrogen evolution
resolves10.1039/c3ee00045aCorrelating the hydrogen evolution reaction activity in alkaline electrolytes with the hydrogen binding energy on monometallic surfaces
resolves10.1002/ange.201708484Experimental Proof of the Bifunctional Mechanism for the Hydrogen Oxidation in Alkaline Media
resolves10.1038/nenergy.2016.130Activity origin and catalyst design principles for electrocatalytic hydrogen evolution on heteroatom-doped graphene
resolves10.1002/advs.202003579An Investigation of Active Sites for electrochemical CO<sub>2</sub> Reduction Reactions: From In Situ Characterization to Rational Design
resolves10.1002/anie.201914752Molybdenum Carbide‐Oxide Heterostructures: In Situ Surface Reconfiguration toward Efficient Electrocatalytic Hydrogen Evolution
resolves10.1088/1361-6528/ab2993Converting surface-oxidized cobalt phosphides into Co
<sub>2</sub>
(P
<sub>2</sub>
O
<sub>7</sub>
)-CoP heterostructures for efficient electrocatalytic hydrogen evolution
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