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Recent Progress in Redox Flow Battery Research and Development
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journal
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September 2012 |
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Mitigating Ring‐Opening to Develop Stable TEMPO Catholytes for pH‐Neutral All‐Organic Redox Flow Batteries
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June 2022 |
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Material Design of Aqueous Redox Flow Batteries: Fundamental Challenges and Mitigation Strategies
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journal
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October 2020 |
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Low‐Cost Titanium–Bromine Flow Battery with Ultrahigh Cycle Stability for Grid‐Scale Energy Storage
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journal
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November 2020 |
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Redox Targeting of Energy Materials for Energy Storage and Conversion
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journal
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October 2021 |
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All-Solid-State Lithium-Ion Microbatteries: A Review of Various Three-Dimensional Concepts
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journal
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November 2010 |
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A New Fe/V Redox Flow Battery Using a Sulfuric/Chloric Mixed-Acid Supporting Electrolyte
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February 2012 |
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A Total Organic Aqueous Redox Flow Battery Employing a Low Cost and Sustainable Methyl Viologen Anolyte and 4-HO-TEMPO Catholyte
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journal
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December 2015 |
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Designing Safe Electrolyte Systems for a High-Stability Lithium-Sulfur Battery
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January 2018 |
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High‐Abundance and Low‐Cost Metal‐Based Cathode Materials for Sodium‐Ion Batteries: Problems, Progress, and Key Technologies
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February 2019 |
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A High Potential, Low Capacity Fade Rate Iron Complex Posolyte for Aqueous Organic Flow Batteries
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October 2022 |
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A Long Cycle Life, Self-Healing Zinc-Iodine Flow Battery with High Power Density
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journal
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May 2018 |
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Sustainable Electrical Energy Storage through the Ferrocene/Ferrocenium Redox Reaction in Aprotic Electrolyte
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August 2014 |
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All-Iron Redox Flow Battery Tailored for Off-Grid Portable Applications
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November 2015 |
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Chrome and cobalt‐based novel electrolyte systems for redox flow batteries
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May 2020 |
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Aqueous redox flow battery using iron 2,2‐bis(hydroxymethyl)‐2,2′,2′‐nitrilotriethanol complex and ferrocyanide as newly developed redox couple
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February 2022 |
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Nonprecious metal catalysts for the molecular oxygen-reduction reaction
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September 2008 |
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Synthesis, Properties, and Applications of Iron Nanoparticles
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May 2005 |
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Solid/Quasi‐Solid Phase Conversion of Sulfur in Lithium–Sulfur Battery
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February 2022 |
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Development of organic redox‐active materials in aqueous flow batteries: Current strategies and future perspectives
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March 2023 |
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Scale-up studies of an Fe/Cr redox flow battery based on shunt current analysis
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July 1992 |
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Iron-based flow batteries to store renewable energies
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February 2018 |
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Redox flow batteries a review
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September 2011 |
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Aqueous organic redox flow batteries
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March 2019 |
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Stack Design Considerations for Vanadium Redox Flow Battery
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June 2018 |
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Characteristics of a new all-vanadium redox flow battery
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January 1988 |
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Optimization studies on a Fe/Cr redox flow battery
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January 1992 |
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Applications of electrochemistry in corrosion science and in practice
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January 1974 |
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An aqueous alkaline battery consisting of inexpensive all-iron redox chemistries for large-scale energy storage
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April 2018 |
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All iron aqueous redox flow batteries using organometallic complexes consisting of iron and 3-[bis (2-hydroxyethyl)amino]-2-hydroxypropanesulfonic acid ligand and ferrocyanide as redox couple
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journal
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October 2020 |
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Li7P3S11 electrolyte for all-solid-state lithium-ion batteries: structure, synthesis, and applications
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journal
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October 2022 |
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Electrolyte optimization of alkaline aqueous redox flow battery using iron-2,2-bis(hydroxymethyl)-2,2′,2′-nitrilotriethanol complex as active material for anolyte
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journal
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February 2023 |
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Next-generation aqueous flow battery chemistries
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December 2019 |
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Cyclable membraneless redox flow batteries based on immiscible liquid electrolytes: Demonstration with all-iron redox chemistry
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journal
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March 2018 |
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Investigations on new Fe–Mn redox couple based aqueous redox flow battery
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journal
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June 2020 |
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Near to neutral pH all-iron redox flow battery based on environmentally compatible coordination compounds
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journal
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October 2022 |
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Insights into the Synthesis, types and application of iron Nanoparticles: The overlooked significance of environmental effects
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January 2022 |
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Vanadium redox flow batteries: A comprehensive review
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October 2019 |
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Stable cluster formation in aqueous suspensions of iron oxyhydroxide nanoparticles
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September 2007 |
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Recent progress in organic redox flow batteries: Active materials, electrolytes and membranes
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journal
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September 2018 |
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Towards an all-vanadium redox flow battery with higher theoretical volumetric capacities by utilizing the VO2+/V3+ couple
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journal
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September 2018 |
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Low-cost all-iron flow battery with high performance towards long-duration energy storage
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journal
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October 2022 |
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Cost and performance model for redox flow batteries
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February 2014 |
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A polyoxometalate flow battery
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August 2013 |
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Slurry electrodes for iron plating in an all-iron flow battery
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October 2015 |
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In-tank hydrogen-ferric ion recombination
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August 2016 |
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A high-performance all-iron non-aqueous redox flow battery
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January 2020 |
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New hybrid redox flow battery with high energy density using V–Mn/V–Mn multiple redox couples
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journal
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March 2020 |
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Cost-effective iron-based aqueous redox flow batteries for large-scale energy storage application: A review
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journal
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May 2021 |
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A low-cost sulfate-based all iron redox flow battery
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November 2021 |
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Polyoxometalate-based electrolyte materials in redox flow batteries: Current trends and emerging opportunities
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May 2022 |
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Iron metal anode for aqueous rechargeable batteries
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September 2021 |
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Progress of enhancing the safety of lithium ion battery from the electrolyte aspect
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January 2019 |
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Utility-Scale Storage of Renewable Energy
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July 2004 |
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Aqueous Colloid Flow Batteries Based on Redox-Reversible Polyoxometalate Clusters and Size-Exclusive Membranes
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December 2022 |
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All-Soluble All-Iron Aqueous Redox-Flow Battery
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journal
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May 2016 |
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Materials and Systems for Organic Redox Flow Batteries: Status and Challenges
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journal
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August 2017 |
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Morphology and Phase Changes in Iron Anodes Affecting their Capacity and Stability in Rechargeable Alkaline Batteries
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March 2018 |
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Electrochemical Energy Storage for Green Grid
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May 2011 |
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Material design and engineering of next-generation flow-battery technologies
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November 2016 |
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A metal-free organic–inorganic aqueous flow battery
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January 2014 |
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Redox flow batteries go organic
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February 2016 |
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Ambipolar zinc-polyiodide electrolyte for a high-energy density aqueous redox flow battery
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February 2015 |
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A biomimetic high-capacity phenazine-based anolyte for aqueous organic redox flow batteries
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journal
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June 2018 |
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Symmetry-breaking design of an organic iron complex catholyte for a long cyclability aqueous organic redox flow battery
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August 2021 |
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A high-performance all-metallocene-based, non-aqueous redox flow battery
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journal
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January 2017 |
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3D-printed fluidic networks for high-power-density heat-managing miniaturized redox flow batteries
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January 2017 |
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Molecular engineering of organic electroactive materials for redox flow batteries
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journal
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January 2018 |
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A membrane-free interfacial battery with high energy density
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January 2018 |
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Progress and perspectives on halide lithium conductors for all-solid-state lithium batteries
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January 2020 |
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Rechargeable aqueous zinc–bromine batteries: an overview and future perspectives
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journal
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January 2021 |
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Mechanistic insights of cycling stability of ferrocene catholytes in aqueous redox flow batteries
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journal
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January 2022 |
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Decomposition pathways and mitigation strategies for highly-stable hydroxyphenazine flow battery anolytes
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journal
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January 2021 |
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Tuning the ferrous coordination structure enables a highly reversible Fe anode for long-life all-iron flow batteries
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January 2021 |
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A new redox flow battery using Fe/V redox couples in chloride supporting electrolyte
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January 2011 |
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A new redox flow battery of high energy density with V/Mn hybrid redox couples
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September 2014 |
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XIII. Chemical symmetry, or the influence of atomic arrangement on the physical properties of compounds
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February 1882 |
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Estimating the cost of organic battery active materials: a case study on anthraquinone disulfonic acid
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July 2018 |
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Electrical Energy Storage for the Grid: A Battery of Choices
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November 2011 |
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Alkaline quinone flow battery
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September 2015 |
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Reversible ketone hydrogenation and dehydrogenation for aqueous organic redox flow batteries
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May 2021 |
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Effect of Ti(IV) Ion on Mn(III) Stability in Ti/Mn Electrolyte for Redox Flow Battery
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July 2016 |
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Investigation of Factors Affecting Performance of the Iron-Redox Battery
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January 1981 |
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Characterizing Slurry Electrodes Using Electrochemical Impedance Spectroscopy
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June 2015 |
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A High Efficiency Iron-Chloride Redox Flow Battery for Large-Scale Energy Storage
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October 2015 |
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Improvements to the Coulombic Efficiency of the Iron Electrode for an All-Iron Redox-Flow Battery
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January 2018 |
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An Investigation into Factors Affecting the Iron Plating Reaction for an All-Iron Flow Battery
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November 2014 |
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Studies of Iron-Ligand Complexes for an All-Iron Flow Battery Application
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January 2014 |
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Iron Electrodeposition in a Deep Eutectic Solvent for Flow Batteries
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January 2017 |
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Rapid, Low-Cost, and Ecofriendly Approach for Iron Nanoparticle Synthesis Using Aspergillus oryzae TFR9
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March 2013 |
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Ionic Liquid and Ionanofluid-Based Redox Flow Batteries—A Mini Review
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June 2022 |
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Family Tree for Aqueous Organic Redox Couples for Redox Flow Battery Electrolytes: A Conceptual Review
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January 2022 |