ChemElectroChem

Papers
(The H4-Index of ChemElectroChem is 38. The table below lists those papers that are above that threshold based on CrossRef citation counts [max. 250 papers]. The publications cover those that have been published in the past four years, i.e., from 2022-08-01 to 2026-08-01.)
ArticleCitations
Single‐Site Molecular Ruthenium(II) Water‐Oxidation Catalysts Grafted into a Polymer‐Modified Surface for Improved Stability and Efficiency191
Insights into the High Catalytic Activity of Li‐Ion Battery Waste toward Oxygen Reduction to Hydrogen Peroxide123
Enhancing B/N‐H Fuel Cell Durability: Insights from Degradation Mechanisms and Optimization109
96
Broadening Applicability of the Poor Academic's Method for Reversing Polarity in Redox Flow Cell Cycling94
About the Consideration of the Inactive Materials and the Meshing Procedures in Computational Models of Lithium Ion Battery Electrodes73
Cover Feature: Redox‐Stabilized Sn/SnO2 Nanostructures for Efficient and Stable CO2 Electroreduction to Formate (ChemElectroChem 8/2023)65
The Direct Electrochemical Detection of Hepatitis B Virus63
Cover Feature: Modulating the Electrochemical Response of Eco‐Friendly Laser‐Pyrolyzed Paper Sensors Applied to Nitrite Determination (ChemElectroChem 1/2023)63
ECL‐Based Readout of Electric Field‐Induced Fine‐Tuning of Redox Activity62
One‐Step Synthesized Al/Mg Codoped LiNi 0.9 Mn 0.1 O 2 62
58
Benchmarking La‐Based Perovskites as Bifunctional Cathodes For Primary and Rechargeable Zinc−Air Batteries with Biopolymer‐Based Electrolyte57
How Metal/Insulator Interfaces Enable an Enhancement of the Hydrogen Evolution Reaction Kinetics57
Scalable Synthesis of Pre‐Intercalated Manganese(III/IV) Oxide Nanostructures for Supercapacitor Electrodes: Electrochemical Comparison of Birnessite and Cryptomelane Products54
Atomic Dual‐Site Ni/Co‐Decorated Carbon Nanofiber Paper for Efficient O2 Electrocatalysis and Flexible Zn‐Air Battery54
Electrospun Carbon Nanofibre‐Based Catalysts Prepared with Co and Fe Phthalocyanine for Oxygen Reduction in Acidic Medium53
Array of Interdigitated Bipolar Electrodes for Selective Capture and Analysis of Melanoma Cells52
Nanoelectrochemical Platform for Elucidating the Reaction between a Solid Active Material and a Dissolved Redox Species for Mediated Redox‐Flow Batteries51
Novel Ethylene Glycol Substituted Benzoxadiazole and Benzothiadiazole as Anolytes for Nonaqueous Organic Redox Flow Batteries50
Challenges in Measuring Transport Parameters of Carbonate‐Based Electrolytes47
Development of Supercapacitors with 3D Porous Structures47
Influence of Surface Area Calculation Methods on the Interpretation of Lithium‐Ion Diffusion Coefficient in Graphite Electrodes46
Impact of the Carbon Substrate for Gas Diffusion Electrodes on the Electroreduction of CO2 to Formate45
Combining Different Metals In Transition Metal Dichalcogenides for Hydrogen Evolution Reaction45
Atomically Dispersed Metal‐Nitrogen‐Carbon Electrocatalysts for the Oxygen Reduction Reaction43
Mesoporous Silica‐Stabilized Ceria Antioxidants for Enhancing PEMFC Durability43
Promotion of Direct Electron Transfer to Cytochrome c by Functionalized Thiophene‐based Conducting Polymers42
Understanding Charge Storage Mechanisms in Flexible Nanocellulose/Graphite Battery Electrodes40
Effect of Carbonization Behaviour of Cotton Biomass in Electrodes for Sodium‐Ion Batteries39
Long‐Life Pillar[5]quinone Cathode for Aqueous Zinc‐Ion Batteries39
Impact of Li Ion Transport Properties on Reversibility of Li Metal Electrode in Glyme‐Based Electrolytes39
LDHs and their Derivatives for Electrochemical Energy Storage and Conversion Systems: Design, Insights and Applications39
Electrochemical Liquid‐Liquid‐Solid Growth of Ag‐In Crystals with Liquid Indium Alloy Electrodes38
Glucose and Glutamate Detection by Oxidase/Hemin Peroxidase Mimic Cascades Assembled on Macro‐ and Microelectrodes38
Front Cover: Artificial Enzymatic Electrochemistry (ChemElectroChem 21/2025)38
Modification Mechanisms and Synergistic Effects of Nb/Al Codoping in High‐Nickel Cathode Materials for Lithium‐Ion Batteries38
Three Design Strategies for Improving the Thermal Stability of Lithium‐Ion Batteries38
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