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Advanced Energy Materials, ISSN 1614-6832, 03/2018, Volume 8, Issue 8, pp. 1870034 - n/a
In article number 1702056 Roy G. Gordon, Michael J. Aziz and co‐workers, introduce an aqueous flow battery based on low‐cost, nonflammable, noncorrosive, and... 
benzoquinone | energy storage | molecular simulation | alkaline aqueous flow batteries | Quinone | Batteries | Quinones | Aqueous solutions | Iron cyanides | Storage batteries | Electrons | Rechargeable batteries | Energy storage
Journal Article
Chemical Engineering Journal, ISSN 1385-8947, 04/2020, Volume 386, p. 123985
Journal Article
Applied Energy, ISSN 0306-2619, 04/2018, Volume 215, pp. 98 - 105
In this work, an iron-based alkaline battery using the same redox-active element featuring different coordination chemistries is developed and tested. The... 
All iron battery | Alkaline battery | Low cost | Energy storage | SYSTEM | ELECTROLYTE | DESIGN | ENERGY & FUELS | PERFORMANCE | FLOW-BATTERY | ENGINEERING, CHEMICAL | EVOLUTION | NICKEL | Iron compounds | Iron industry | Ferric oxide | Energy efficiency | Batteries | Energy management systems | Aerospace engineering
Journal Article
Sustainable Energy and Fuels, ISSN 2398-4902, 2018, Volume 2, Issue 10, pp. 2252 - 2259
A rechargeable organic-air flow battery based on aqueous electrolytes is proposed and tests are conducted in a divided cell with a three-electrode... 
GRAPHITE FELT ELECTRODES | ENERGY & FUELS | PERFORMANCE | MATERIALS SCIENCE, MULTIDISCIPLINARY | MEMBRANES | CHEMISTRY, PHYSICAL | CHALLENGES | QUINOXALINE | MOLECULES | ALKALINE WATER ELECTROLYSIS | PROGRESS | ENERGY-STORAGE | EFFICIENT
Journal Article
ACS Applied Materials & Interfaces, ISSN 1944-8244, 09/2015, Volume 7, Issue 34, pp. 19446 - 19454
The stability of hydrocarbon ion exchange membranes is one of the critical issues for a flow battery. However, the degradation mechanism of ion exchange... 
4,4′-bipyridine | vanadium flow battery | hybrid orbital | degradation mechanism | anion exchange membranes | polysulfone | 4,4 '-bipyridine | FT-RAMAN | PERFORMANCE | MATERIALS SCIENCE, MULTIDISCIPLINARY | RAMAN-SPECTROSCOPY | COMPLEXES | NANOSCIENCE & NANOTECHNOLOGY | COPOLYMERS | ELECTROLYTES | AQUEOUS-SOLUTION | INFRARED-SPECTRA | ENERGY-STORAGE | ALKALINE FUEL-CELLS
Journal Article
Journal of Membrane Science, ISSN 0376-7388, 06/2015, Volume 483, pp. 60 - 69
Novel quaternized membranes with zwitterionic groups applied in all-vanadium redox flow battery (VRB) have been prepared using a solvent free strategy, which... 
Quaternized membranes | Ionic knots | Zwitterionic groups | Solvent free | All-vanadium redox flow battery | POLYMER SCIENCE | PERMEABILITY | RESEARCH-AND-DEVELOPMENT | ANION-EXCHANGE MEMBRANE | ENGINEERING, CHEMICAL | COMPOSITE MEMBRANE | PROGRESS | ALKALINE FUEL-CELLS | Polymerization | Green market | Batteries | Permeability | Surface active agents | Vanadium
Journal Article
AIChE Journal, ISSN 0001-1541, 07/2011, Volume 57, Issue 7, pp. 1961 - 1967
A zinc‐alkaline flow cell was used to validate a new type of flow battery in which all reagents and products remain as solids on the electrodes. In every case,... 
battery | flow | packed‐bed electrode | electrolyte | energy | Packed-bed electrode | Electrolyte | Energy | Battery | Flow | ENGINEERING, CHEMICAL | packed-bed electrode | SOLUBLE LEAD(II)
Journal Article
Electrochimica Acta, ISSN 0013-4686, 2010, Volume 55, Issue 11, pp. 3830 - 3837
The effect of adding magnesium to lithium on lithium electrochemical behavior in 4 mol L LiOH is studied using electrochemical techniques. The results show... 
Lithium–water battery | Alkaline corrosion | Passive films | Magnesium hydride | Lithium–magnesium alloy | Lithium-water battery | Lithium-magnesium alloy | ELECTROCHEMISTRY | ALUMINUM | PASSIVATION | SEAWATER | MODEL | ELECTROLYTES | FLOW | Alterations | Hydrogen evolution | Alloys | Battery | X-rays | Lithium | Magnesium | Porosity
Journal Article
Journal of Alloys and Compounds, ISSN 0925-8388, 09/2019, Volume 800, pp. 99 - 106
Journal Article
Electrochimica Acta, ISSN 0013-4686, 12/2017, Volume 258, pp. 703 - 708
The efficiency of zinc electrodeposition is of fundamental importance for improving long-term performance of aqueous zinc-ion batteries. In order to improve... 
Branched polyethyleneimine | Electrolyte additive | Aqueous zinc-ion batteries | Electrodeposition efficiency | ELECTROCHEMISTRY | ALKALINE-SOLUTIONS | COPPER HEXACYANOFERRATE | SUSPENSIONS | DEPOSITION | GROWTH | CELL | MORPHOLOGY | Electrochemical reactions | Electrolytes | Batteries | Adsorption
Journal Article
Electrochemistry Communications, ISSN 1388-2481, 2007, Volume 9, Issue 11, pp. 2639 - 2642
A novel redox flow battery–single flow Zn/NiOOH battery is proposed. The electrolyte of this battery for both negative electrode and positive electrode is high... 
Zinc–nickel battery | Secondary alkaline battery | Zinc anode | Redox flow battery | Zinc-nickel battery | ELECTROCHEMISTRY | CELLS | ELECTROLYTE | redox flow battery | zinc-nickel battery | zinc anode | secondary alkaline battery | SOLUBLE LEAD(II)
Journal Article
Journal of Membrane Science, ISSN 0376-7388, 01/2018, Volume 545, pp. 116 - 125
In the pursuit of alkaline stable cationic ions as promising candidates for high performance anion exchange membranes, two novel imidazoliums with N3-adamantyl... 
Imidazolium | Anion exchange membrane | Adamantyl substituent | Alkaline stability | POLYMER SCIENCE | POLY(ARYLENE ETHER SULFONE) | CROSS-LINKING | FUEL-CELLS | COPOLYMERS | POLYMER ELECTROLYTES | QUATERNARY AMMONIUM | ENGINEERING, CHEMICAL | FLOW BATTERIES | POLY(ETHER SULFONE)S | IONIC LIQUIDS | POLY(PHENYLENE OXIDE) | Hydrogen | Fuel cells
Journal Article