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Electrocatalytic Ozone Decomposition Over the Entire Humidity Range

https://doi.org/10.2139/ssrn.4200783
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34/34 checkable references clean · checked 2026-09-04

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.

10 without a DOI — not checked. A reference deposited without a DOI is never matched by title or guessed at; it stays outside the checked set, and this line discloses that.

The 34 checked references that resolve
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Long-Term Ozone Exposure and Mortality
resolves10.1038/s41558-019-0686-3
Natural control on ozone pollution
resolves10.1016/j.envint.2018.07.012
Human exposure to ozone in school and office indoor environments
resolves10.1038/sj.jea.7500165
The National Human Activity Pattern Survey (NHAPS): a resource for assessing exposure to environmental pollutants
resolves10.1016/j.buildenv.2020.107370
Active ozone removal technologies for a safe indoor environment: A comprehensive review
resolves10.1016/j.jes.2020.03.058
Recent advances in catalytic decomposition of ozone
resolves10.1021/ie00049a033
Decomposition of ozone on a silver catalyst
resolves10.1021/acs.est.8b01594
Tuning the K<sup>+</sup> Concentration in the Tunnels of α-MnO<sub>2</sub> To Increase the Content of Oxygen Vacancy for Ozone Elimination
resolves10.1016/j.apcatb.2016.02.055
Catalytic decomposition of gaseous ozone over manganese dioxides with different crystal structures
resolves10.1016/j.apcatb.2017.02.068
Surface oxygen vacancy induced α-MnO2 nanofiber for highly efficient ozone elimination
resolves10.1021/acs.est.9b01822
Role of Structural Defects in MnO<sub><i>x</i></sub> Promoted by Ag Doping in the Catalytic Combustion of Volatile Organic Compounds and Ambient Decomposition of O<sub>3</sub>
resolves10.1002/anie.201810268
An Iron‐Containing Metal–Organic Framework as a Highly Efficient Catalyst for Ozone Decomposition
resolves10.1021/jacs.1c01027
Ozone Decomposition by a Manganese-Organic Framework over the Entire Humidity Range
resolves10.1038/s41929-018-0108-3
Efficient electrocatalytic CO2 reduction on a three-phase interface
resolves10.1021/cr00103a010
Electrode materials for electrosynthesis
resolves10.1016/j.ijhydene.2011.12.148
A review of gas diffusion layer in PEM fuel cells: Materials and designs
resolves10.1016/j.memsci.2015.03.044
Enhancing the hydrophilicity and water permeability of polypropylene membranes by nitric acid activation and metal oxide deposition
resolves10.1021/jacs.7b07187
Enhanced Photocatalytic Reaction at Air–Liquid–Solid Joint Interfaces
resolves10.1021/acs.nanolett.0c03560
Designing a Nanoscale Three-phase Electrochemical Pathway to Promote Pt-catalyzed Formaldehyde Oxidation
resolves10.1016/0013-4686(89)87071-9
Role of polymeric properties in the electrochemical behaviour of redox polymer-modified electrodes
resolves10.1039/D1CS00116G
Nitrate electroreduction: mechanism insight, <i>in situ</i> characterization, performance evaluation, and challenges
resolves10.1016/j.electacta.2005.02.093
Nitrate reduction on single-crystal platinum electrodes
resolves10.1016/j.electacta.2016.12.147
Electrocatalytic reduction of Nitrate on Copper single crystals in acidic and alkaline solutions.
resolves10.1021/jp9717554
Vibrational Spectroscopy of NH<sub>4</sub><sup>+</sup> Ions in Zeolitic Materials:  An IR Study
resolves10.1021/ma00162a008
Hydrogen bonding in polymers. 4. Infrared temperature studies of a simple polyurethane
resolves10.1021/jacs.7b12101
A Spectroscopic Study on the Nitrogen Electrochemical Reduction Reaction on Gold and Platinum Surfaces
resolves10.1021/ie302212p
Removal of Ammonia from Water by Ozone Microbubbles
resolves10.1021/ja029503q
In Situ FTIR Studies of Primary Intermediates of Photocatalytic Reactions on Nanocrystalline TiO <sub>2</sub> Films in Contact with Aqueous Solutions
resolves10.1016/j.watres.2005.05.026
Efficiency of activated carbon to transform ozone into OH radicals: Influence of operational parameters
resolves10.1021/es00142a012
Decomposition of ozone in water in the presence of organic solutes acting as promoters and inhibitors of radical chain reactions
resolves10.1021/es00104a009
Decomposition of ozone in water: rate of initiation by hydroxide ions and hydrogen peroxide
resolves10.1021/cr040204o
Mesopore-Modified Zeolites:  Preparation, Characterization, and Applications
resolves10.1016/j.polymer.2004.05.034
A two dimensional infrared correlation spectroscopic study on the structure changes of PVDF during the melting process
resolves10.1016/j.apcatb.2021.120466
To enhance water resistance for catalytic ozone decomposition by fabricating H2O adsorption-site in OMS-2 tunnels
The 10 references without a DOI — listed, not checked
no DOI — not checkedCohort-based long-term ozone exposure-associated mortality risks with adjusted metrics: A systematic review and meta-analysis
no DOI — not checkedref9
no DOI — not checkedElectrocatalyst approaches and challenges for automotive fuel cells
no DOI — not checkedref22
no DOI — not checkedref23
no DOI — not checkedElectrified membranes for water treatment applications
no DOI — not checkedref33
no DOI — not checkedAdvanced nitrogen removal from mature landfill leachate via partial T nitrification-Anammox biofilm reactor (PNABR) driven by high dissolved oxygen (DO): Protection mechanism of aerobic biofilm
no DOI — not checkedA robust H-transfer redox mechanism determines the high-efficiency catalytic performance of layered double hydroxides
no DOI — not checkedEncapsulate ?-MnO 2 nanofiber within graphene layer to tune surface electronic structure for efficient ozone decomposition
What this badge says. CiteStamped means the CHECKABLE references of this work were clean at the dated check: each resolved to a known work in a public registry, and none carried a retraction notice at that time. It says nothing about the quality, findings, or importance of the work itself, and nothing about references deposited without a DOI.

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