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Net-zero emissions energy systems
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Power-Electronic Systems for the Grid Integration of Renewable Energy Sources: A Survey
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Future Energy Systems: Integrating Renewable Energy Sources into the Smart Power Grid Through Industrial Electronics
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Emerging Power Quality Challenges Due to Integration of Renewable Energy Sources
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Geophysical constraints on the reliability of solar and wind power in the United States
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Electrochemical Energy Storage for Green Grid
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Rechargeable redox flow batteries: flow fields, stacks and design considerations
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January 2018 |
Engineering aspects of the design, construction and performance of modular redox flow batteries for energy storage
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June 2017 |
Redox flow batteries for energy storage: their promise, achievements and challenges
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August 2019 |
Recent advancements in rational design of non-aqueous organic redox flow batteries
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January 2020 |
Pathways to low-cost electrochemical energy storage: a comparison of aqueous and nonaqueous flow batteries
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January 2014 |
Influence of architecture and material properties on vanadium redox flow battery performance
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January 2016 |
3D-printed conductive static mixers enable all-vanadium redox flow battery using slurry electrodes
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March 2018 |
Exploring the Role of Electrode Microstructure on the Performance of Non-Aqueous Redox Flow Batteries
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January 2019 |
A technology review of electrodes and reaction mechanisms in vanadium redox flow batteries
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January 2015 |
Engineering porous electrodes for next-generation redox flow batteries: recent progress and opportunities
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Chemical modification of graphite electrode materials for vanadium redox flow battery application—part II. Acid treatments
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Modification of graphite electrode materials for vanadium redox flow battery application—I. Thermal treatment
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Microwave-treated graphite felt as the positive electrode for all-vanadium redox flow battery
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Metal and Metal Oxide Electrocatalysts for Redox Flow Batteries
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March 2020 |
A gradient porous electrode with balanced transport properties and active surface areas for vanadium redox flow batteries
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November 2019 |
A novel electrode formed with electrospun nano- and micro-scale carbon fibers for aqueous redox flow batteries
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September 2020 |
Aligned hierarchical electrodes for high-performance aqueous redox flow battery
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Computational design of microarchitected porous electrodes for redox flow batteries
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November 2021 |
Non‐Solvent Induced Phase Separation Enables Designer Redox Flow Battery Electrodes
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March 2021 |
Microstructural engineering of high-power redox flow battery electrodes via non-solvent induced phase separation
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July 2022 |
Harnessing Interfacial Electron Transfer in Redox Flow Batteries
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February 2021 |
Aspects of electron transfer processes in vanadium redox-flow batteries
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February 2020 |
Influence of Edge- and Basal-Plane Sites on the Vanadium Redox Kinetics for Flow Batteries
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A Thin Fiber Film Rotating Disc Electrode Analysis of Carbon Felt for Redox Flow Battery Application
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May 2012 |
Kinetic Study of Electrochemical Treatment of Carbon Fiber Microelectrodes Leading to In Situ Enhancement of Vanadium Flow Battery Efficiency
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January 2016 |
Electrode Kinetics of Vanadium Flow Batteries: Contrasting Responses of V II -V III and V IV -V V to Electrochemical Pretreatment of Carbon
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October 2015 |
Influence of Pretreatment on Kinetics at Carbon Electrodes and Consequences for Flow Battery Performance
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February 2017 |
Determination of Rate Constants and Reaction Orders of Vanadium‐Ion Kinetics on Carbon Fiber Electrodes.
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September 2020 |
EIS at carbon fiber cylindrical microelectrodes
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December 2019 |
Single fibre electrode measurements – A versatile strategy for assessing the non-uniform kinetics at carbon felt electrodes
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September 2020 |
Using single fibre electrodes to determine the spatial variability of rate constants across carbon felt electrodes
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October 2021 |
Quantifying Electron Transfer Kinetics on Porous Carbon Electrodes for Redox Flow Batteries
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November 2020 |
Evaluation of Electrospun Fibrous Mats Targeted for Use as Flow Battery Electrodes
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A review of heat treatment on polyacrylonitrile fiber
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Optimization of stabilization and carbonization treatment of PAN fibres and structural characterization of the resulting carbon fibres
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Electrospun Carbon Nanofiber Webs with Controlled Density of States for Sensor Applications
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September 2016 |
Atomic Force Microscopy of DNA Immobilized onto a Highly Oriented Pyrolytic Graphite Electrode Surface
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March 2003 |
Electrochemical corrosion of a glassy carbon electrode
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October 2017 |
Assessing the structural properties of graphitic and non-graphitic carbons by Raman spectroscopy
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May 2020 |
Surface properties and graphitization of polyacrylonitrile based fiber electrodes affecting the negative half-cell reaction in vanadium redox flow batteries
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July 2016 |
Carbonisation temperature dependence of electrochemical activity of nitrogen-doped carbon fibres from electrospinning as air-cathodes for aqueous-alkaline metal–air batteries
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January 2019 |
Raman characterization of carbon nanofibers prepared using electrospinning
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July 2003 |
Electrospun Carbon Nanofibers as Alternative Electrode Materials for Vanadium Redox Flow Batteries
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August 2015 |
Balancing the specific surface area and mass diffusion property of electrospun carbon fibers to enhance the cell performance of vanadium redox flow battery
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April 2020 |
Raman spectroscopy of coal component of Late Permian coals from Southern China
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Balancing the Micro‐Mesoporosity for Activity Maximization of N‐Doped Carbonaceous Electrocatalysts for the Oxygen Reduction Reaction
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February 2019 |
Raman microspectroscopy of soot and related carbonaceous materials: Spectral analysis and structural information
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Advanced Carbon Electrode Materials for Molecular Electrochemistry
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July 2008 |
Flow Battery Electroanalysis. 2. Influence of Surface Pretreatment on Fe(III/II) Redox Chemistry at Carbon Electrodes
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December 2018 |
Vanadium (V) reduction reaction on modified glassy carbon electrodes – Role of oxygen functionalities and microstructure
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November 2016 |
Influence of surface oxygen groups on V(II) oxidation reaction kinetics
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February 2017 |
Composition of the Electrode Determines Which Half-Cell’s Rate Constant is Higher in a Vanadium Flow Battery
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Identifying the Active Site in Nitrogen-Doped Graphene for the VO 2+ /VO 2 + Redox Reaction
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May 2013 |
Exploration of Biomass-Derived Activated Carbons for Use in Vanadium Redox Flow Batteries
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April 2020 |
Surface modification of graphene and graphite by nitrogen plasma: Determination of chemical state alterations and assignments by quantitative X-ray photoelectron spectroscopy
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April 2015 |
Limited Accessibility to Surface Area Generated by Thermal Pretreatment of Electrodes Reduces Its Impact on Redox Flow Battery Performance
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November 2021 |
Suppressing Ion Transfer Enables Versatile Measurements of Electrochemical Surface Area for Intrinsic Activity Comparisons
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February 2018 |
Highly accurate apparatus for electrochemical characterization of the felt electrodes used in redox flow batteries
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April 2016 |
Hydrogen evolution at the negative electrode of the all-vanadium redox flow batteries
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Elucidating the Nuanced Effects of Thermal Pretreatment on Carbon Paper Electrodes for Vanadium Redox Flow Batteries
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Quantitative correlations of heterogeneous electron-transfer kinetics with surface properties of glassy carbon electrodes
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Deconvolution of electrochemical double layer capacitance between fractions of active and total surface area of graphite felts
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Review of the Development of First‐Generation Redox Flow Batteries: Iron‐Chromium System
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December 2021 |
Quantifying the impact of viscosity on mass-transfer coefficients in redox flow batteries
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Redox Flow Batteries: How to Determine Electrochemical Kinetic Parameters
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March 2020 |
A cross examination of electron transfer rate constants for carbon screen-printed electrodes using Electrochemical Impedance Spectroscopy and cyclic voltammetry
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Rates of Electrode Processes by the Rotating Disk Method
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High performance electrodes in vanadium redox flow batteries through oxygen-enriched thermal activation
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Alkaline Quinone Flow Battery with Long Lifetime at pH 12
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A redox-flow battery with an alloxazine-based organic electrolyte
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Alkaline quinone flow battery
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Alkaline Benzoquinone Aqueous Flow Battery for Large-Scale Storage of Electrical Energy
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A neutral polysulfide/ferricyanide redox flow battery
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Unraveling pH dependent cycling stability of ferricyanide/ferrocyanide in redox flow batteries
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