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Top Articles

#TitleJournalYearCitations
1Porous Two‐Dimensional Transition Metal Carbide (MXene) Flakes for High‐Performance Li‐Ion StorageChemElectroChem2016452
2Manipulating the Hydrocarbon Selectivity of Copper Nanoparticles in CO2 Electroreduction by Process ConditionsChemElectroChem2015361
3Multielectron, Multistep Molecular Catalysis of Electrochemical Reactions: Benchmarking of Homogeneous CatalystsChemElectroChem2014345
4Self‐Standing CoP Nanosheets Array: A Three‐Dimensional Bifunctional Catalyst Electrode for Overall Water Splitting in both Neutral and Alkaline MediaChemElectroChem2017345
5Benchmarking the Stability of Oxygen Evolution Reaction Catalysts: The Importance of Monitoring Mass LossesChemElectroChem2014301
6The Applications of Metal−Organic Frameworks in Electrochemical SensorsChemElectroChem2018301
7Development of Electrolytes towards Achieving Safe and High‐Performance Energy‐Storage Devices: A ReviewChemElectroChem2015299
8Is there a Specific Ecological Niche for Electroactive Microorganisms?ChemElectroChem2016253
9Electrochemical Biosensors in Point‐of‐Care Devices: Recent Advances and Future TrendsChemElectroChem2017230
10Water Oxidation at Electrodes Modified with Earth‐Abundant Transition‐Metal CatalystsChemElectroChem2015213
11Electrochemical Reduction of Carbon Dioxide to Formic AcidChemElectroChem2014206
12Corrosion Prevention Mechanism of Aluminum Metal in Superconcentrated ElectrolytesChemElectroChem2015204
13Challenges in Accommodating Volume Change of Si Anodes for Li‐Ion BatteriesChemElectroChem2015204
14Apple‐Biowaste‐Derived Hard Carbon as a Powerful Anode Material for Na‐Ion BatteriesChemElectroChem2016201
15Electrosynthesis of Metal–Organic Frameworks: Challenges and OpportunitiesChemElectroChem2015199
16Recent Progress in Ruthenium Oxide‐Based Composites for Supercapacitor ApplicationsChemElectroChem2019198
17Perovskite as a Cathode Material: A Review of its Role in Solid‐Oxide Fuel Cell TechnologyChemElectroChem2016197
18Phosphorus Electrodes in Sodium Cells: Small Volume Expansion by Sodiation and the Surface‐Stabilization Mechanism in Aprotic SolventChemElectroChem2014196
19Recent Advances in Electrochemical Hydrogen Production from Water Assisted by Alternative Oxidation ReactionsChemElectroChem2019187
20Surface Adsorption of Polyethylene Glycol to Suppress Dendrite Formation on Zinc Anodes in Rechargeable Aqueous BatteriesChemElectroChem2018183
21Electrochemical Impedance Spectroscopy for All‐Solid‐State Batteries: Theory, Methods and Future OutlookChemElectroChem2021176
22Effects of Anion Identity and Concentration on Electrochemical Reduction of CO2ChemElectroChem2018165
23Highly Disordered Carbon as a Superior Anode Material for Room‐Temperature Sodium‐Ion BatteriesChemElectroChem2014158
24In Situ Growth of NiSe Nanowire Film on Nickel Foam as an Electrode for High‐Performance SupercapacitorsChemElectroChem2015157
25Advances in Transition‐Metal Phosphide Applications in Electrochemical Energy Storage and CatalysisChemElectroChem2017155
26Appropriate Use of Electrochemical Impedance Spectroscopy in Water Splitting ElectrocatalysisChemElectroChem2020154
27Dissolution of Platinum in the Operational Range of Fuel CellsChemElectroChem2015152
28Capacity Enhancement and Discharge Mechanisms of Room‐Temperature Sodium–Sulfur BatteriesChemElectroChem2014151
29Core–Shell CuCo2O4@MnO2 Nanowires on Carbon Fabrics as High‐Performance Materials for Flexible, All‐Solid‐State, Electrochemical CapacitorsChemElectroChem2014149
30Recent Progress in Non‐Platinum Counter Electrode Materials for Dye‐Sensitized Solar CellsChemElectroChem2015147
31Effect of Hexafluorophosphate and Fluoroethylene Carbonate on Electrochemical Performance and the Surface Layer of Hard Carbon for Sodium‐Ion BatteriesChemElectroChem2016147
32Electrochemical Stability of Ionic Liquids: General Influences and Degradation MechanismsChemElectroChem2014146
33Recent Advances on Non‐precious Metal Porous Carbon‐based Electrocatalysts for Oxygen Reduction ReactionChemElectroChem2018146
34Redox‐Based Resistive Switching Memories (ReRAMs): Electrochemical Systems at the Atomic ScaleChemElectroChem2014144
35Long‐Term Performance of Chemically and Physically Modified Activated Carbons in Air Cathodes of Microbial Fuel CellsChemElectroChem2014143
36Organic Electrosynthesis: Applications in Complex Molecule SynthesisChemElectroChem2019143
37CO2 Electroreduction with Enhanced Ethylene and Ethanol Selectivity by Nanostructuring Polycrystalline CopperChemElectroChem2016142
38A Hybrid Supercapacitor based on Porous Carbon and the Metal‐Organic Framework MIL‐100(Fe)ChemElectroChem2014141
39Crystal Structure Modification Enhanced FeNb11O29 Anodes for Lithium‐Ion BatteriesChemElectroChem2017139
40High‐Performance Hybrid Supercapacitor Based on Graphene‐Wrapped Li4Ti5O12 and Activated CarbonChemElectroChem2014137
41Benefits of Chromium Substitution in Na3V2(PO4)3 as a Potential Candidate for Sodium‐Ion BatteriesChemElectroChem2015137
42High‐Voltage Supercapacitors Based on Aqueous ElectrolytesChemElectroChem2019133
43Basic Strategies and Types of Applications in Organic ElectrochemistryChemElectroChem2020133
44Recent Advances in Carbon‐Based Bifunctional Oxygen Electrocatalysts for Zn−Air BatteriesChemElectroChem2018129
45Carbon Cloth‐based Hybrid Materials as Flexible Electrochemical SupercapacitorsChemElectroChem2019129
46Counter Electrodes for Quantum‐Dot‐Sensitized Solar CellsChemElectroChem2015127
47Essential Role of Electrode Materials in Electrochemiluminescence ApplicationsChemElectroChem2016126
48Understanding the Heterogeneous Electrocatalytic Reduction of Carbon Dioxide on Oxide‐Derived CatalystsChemElectroChem2018126
49Raman Spectroscopy in Lithium–Oxygen Battery SystemsChemElectroChem2015123
50MoS2‐Nanosheet‐Decorated 2D Titanium Carbide (MXene) as High‐Performance Anodes for Sodium‐Ion BatteriesChemElectroChem2017123