Factors Governing the Activity of a-MnO2 Catalysts in the Oxygen Evolution Reaction: Conductivity vs. Exposed Surface Area of Cryptomelane

scientific article published on 11 March 2020

Factors Governing the Activity of a-MnO2 Catalysts in the Oxygen Evolution Reaction: Conductivity vs. Exposed Surface Area of Cryptomelane is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1002/CHEM.201905090
P932PMC publication ID7540518
P698PubMed publication ID32159252

P2093author name stringWolfgang Schuhmann
Malte Behrens
Thomas Bredow
Anna Rabe
Dulce Morales
Justus Heese-Gärtlein
P2860cites workManganese oxide octahedral molecular sieve K-OMS-2 as catalyst in post plasma-catalysis for trichloroethylene degradation in humid air.Q33467759
In situ X-ray absorption spectroscopy investigation of a bifunctional manganese oxide catalyst with high activity for electrochemical water oxidation and oxygen reductionQ37416845
Uncovering structure-activity relationships in manganese-oxide-based heterogeneous catalysts for efficient water oxidationQ38340377
Biomimetic Water-Oxidation Catalysts: Manganese OxidesQ38484163
Benchmarking heterogeneous electrocatalysts for the oxygen evolution reactionQ43483496
Active mixed-valent MnO(x) water oxidation catalysts through partial oxidation (corrosion) of nanostructured MnO particlesQ43540281
Photochemical water oxidation by crystalline polymorphs of manganese oxides: structural requirements for catalysisQ45348441
A comparison study on Raman scattering properties of alpha- and beta-MnO2.Q45971115
Mechanisms of water oxidation from the blue dimer to photosystem II.Q46710072
Active Site Revealed for Water Oxidation on Electrochemically Induced δ-MnO2: Role of Spinel-to-Layer Phase Transition.Q47716547
Electrocatalytic Water Oxidation by MnOx /C: In Situ Catalyst Formation, Carbon Substrate Variations, and Direct O2 /CO2 Monitoring by Membrane-Inlet Mass SpectrometryQ47719337
Porous manganese oxide octahedral molecular sieves and octahedral layered materialsQ47951974
Nature of Activated Manganese Oxide for Oxygen Evolution.Q50772054
Identification of Surface Reactivity Descriptor for Transition Metal Oxides in Oxygen Evolution Reaction.Q51239898
First principles calculations on oxygen vacant hydrated α-MnO2 for activating water oxidation and its self-healing mechanism.Q52858761
Tuning the oxidation state of manganese oxide nanoparticles on oxygen- and nitrogen-functionalized carbon nanotubes for the electrocatalytic oxygen evolution reaction.Q53476740
Electrochemical trapping of metastable Mn ions for activation of MnO oxygen evolution catalystsQ57143671
Water-oxidation catalysis by synthetic manganese oxides – systematic variations of the calcium birnessite themeQ59346975
Identifying active surface phases for metal oxide electrocatalysts: a study of manganese oxide bi-functional catalysts for oxygen reduction and water oxidation catalysisQ59936839
Facile Formation of Nanostructured Manganese Oxide Films as High-Performance Catalysts for the Oxygen Evolution ReactionQ60028086
Oxidative Deposition of Manganese Oxide Nanosheets on Nitrogen-Functionalized Carbon Nanotubes Applied in the Alkaline Oxygen Evolution ReactionQ69031146
Rational synthesis of alpha-MnO2 single-crystal nanorodsQ74466465
Mechanisms of pH-dependent activity for water oxidation to molecular oxygen by MnO2 electrocatalystsQ83152630
Trends in activity for the water electrolyser reactions on 3d M(Ni,Co,Fe,Mn) hydr(oxy)oxide catalystsQ84074232
Nanostructured MnO2: an efficient and robust water oxidation catalystQ84513906
The "Best Catalyst" for Water Oxidation Depends on the Oxidation Method Employed: A Case Study of Manganese OxidesQ85402884
Water Oxidation Catalysis by Synthetic Manganese Oxides with Different Structural Motifs: A Comparative StudyQ86055101
Revised Oxygen Evolution Reaction Activity Trends for First-Row Transition-Metal (Oxy)hydroxides in Alkaline MediaQ87001192
Structure-property relationship of bifunctional MnO2 nanostructures: highly efficient, ultra-stable electrochemical water oxidation and oxygen reduction reaction catalysts identified in alkaline mediaQ87436839
Evolution of Oxygen-Metal Electron Transfer and Metal Electronic States During Manganese Oxide Catalyzed Water Oxidation Revealed with In Situ Soft X-Ray SpectroscopyQ90771951
BSSE-correction scheme for consistent gaussian basis sets of double- and triple-zeta valence with polarization quality for solid-state calculationsQ91506551
Alkaline manganese electrochemistry studied by in situ and operando spectroscopic methods - metal dissolution, oxide formation and oxygen evolutionQ91876123
P577publication date2020-03-11
P1433published inChemistry—A European JournalQ898737
P1476titleFactors Governing the Activity of a-MnO2 Catalysts in the Oxygen Evolution Reaction: Conductivity vs. Exposed Surface Area of Cryptomelane

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