» Articles » PMID: 28869720

Electrocatalytic Water Oxidation by MnO /C: In Situ Catalyst Formation, Carbon Substrate Variations, and Direct O /CO Monitoring by Membrane-Inlet Mass Spectrometry

Overview
Journal ChemSusChem
Specialty Chemistry
Date 2017 Sep 5
PMID 28869720
Citations 5
Authors
Affiliations
Soon will be listed here.
Abstract

Layers of amorphous manganese oxides were directly formed on the surfaces of different carbon materials by exposing the carbon to aqueous solutions of permanganate (MnO ) followed by sintering at 100-400 °C. During electrochemical measurements in neutral aqueous buffer, nearly all of the MnO /C electrodes show significant oxidation currents at potentials relevant for the oxygen evolution reaction (OER). However, by combining electrolysis with product detection by using mass spectrometry, it was found that these currents were only strictly linked to water oxidation if MnO was deposited on graphitic carbon materials (faradaic O yields >90 %). On the contrary, supports containing sp -C were found to be unsuitable as the OER is accompanied by carbon corrosion to CO . Thus, choosing the "right" carbon material is crucial for the preparation of stable and efficient MnO /C anodes for water oxidation catalysis. For MnO on graphitic substrates, current densities of >1 mA cm at η=540 mV could be maintained for at least 16 h of continuous operation at pH 7 (very good values for electrodes containing only abundant elements such as C, O, and Mn) and post-operando measurements proved the integrity of both the catalyst coating and the underlying carbon at OER conditions.

Citing Articles

Rhenium-Based Electrocatalysts for Water Splitting.

Ramirez A, Heidari S, Vergara A, Aguilera M, Preuss P, Camarada M ACS Mater Au. 2023; 3(3):177-200.

PMID: 38089137 PMC: 10176616. DOI: 10.1021/acsmaterialsau.2c00077.


Controllable Anchoring of Graphitic Carbon Nitride on MnO Nanoarchitectures for Oxygen Evolution Electrocatalysis.

Benedet M, Gallo A, Maccato C, Rizzi G, Barreca D, Lebedev O ACS Appl Mater Interfaces. 2023; 15(40):47368-47380.

PMID: 37769189 PMC: 10571007. DOI: 10.1021/acsami.3c09363.


Rapid wet-chemical oxidative activation of graphite felt electrodes for vanadium redox flow batteries.

Shanahan B, Seteiz K, Heizmann P, Koch S, Buttner J, Ouardi S RSC Adv. 2022; 11(51):32095-32105.

PMID: 35495532 PMC: 9042029. DOI: 10.1039/d1ra05808h.


Factors Governing the Activity of α-MnO Catalysts in the Oxygen Evolution Reaction: Conductivity versus Exposed Surface Area of Cryptomelane.

Heese-Gartlein J, Morales D, Rabe A, Bredow T, Schuhmann W, Behrens M Chemistry. 2020; 26(53):12256-12267.

PMID: 32159252 PMC: 7540518. DOI: 10.1002/chem.201905090.


Oxidative Deposition of Manganese Oxide Nanosheets on Nitrogen-Functionalized Carbon Nanotubes Applied in the Alkaline Oxygen Evolution Reaction.

Antoni H, Morales D, Fu Q, Chen Y, Masa J, Schuhmann W ACS Omega. 2019; 3(9):11216-11226.

PMID: 31459231 PMC: 6645440. DOI: 10.1021/acsomega.8b01433.