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  2. Iron redox flow battery - Wikipedia

    en.wikipedia.org/wiki/Iron_redox_flow_battery

    The group set the groundwork for further development. In 1979, Thaller et. al. introduced an iron-hydrogen fuel cell as a rebalancing cell for the chromium-iron redox flow battery [19] which was adapted 1983 for the iron-redox flow batteries by Stalnake et al. [20] Further development went into the fuel cell as a separate system. [11] [12] [21]

  3. Iron(II) molybdate - Wikipedia

    en.wikipedia.org/wiki/Iron(II)_molybdate

    FeMoO 4 has been used as relatively stable active material for anodes in Li-ion batteries for conversion reaction, [4] as anode material in aqueous supercapacitors due to fast redox reactions [3] and as catalyst for oxygen evolution in alkaline solutions.

  4. Metal–air electrochemical cell - Wikipedia

    en.wikipedia.org/wiki/Metal–air_electrochemical...

    The main raw-material of this technology is iron oxide , a material that is abundant, non-toxic, inexpensive, and environmentally friendly. [19] Most of the batteries currently being developed utilize iron oxide powders to generate and store hydrogen via the Fe/FeO reduction/oxidation (redox) reaction (Fe + H 2 O ⇌ FeO + H 2). [20]

  5. Electromagnetic shielding - Wikipedia

    en.wikipedia.org/wiki/Electromagnetic_shielding

    In electrical engineering, electromagnetic shielding is the practice of reducing or redirecting the electromagnetic field (EMF) in a space with barriers made of conductive or magnetic materials. It is typically applied to enclosures, for isolating electrical devices from their surroundings, and to cables to isolate wires from the environment ...

  6. Flow battery - Wikipedia

    en.wikipedia.org/wiki/Flow_battery

    A typical flow battery consists of two tanks of liquids which are pumped past a membrane held between two electrodes. [1]A flow battery, or redox flow battery (after reduction–oxidation), is a type of electrochemical cell where chemical energy is provided by two chemical components dissolved in liquids that are pumped through the system on separate sides of a membrane.

  7. Solid-state battery - Wikipedia

    en.wikipedia.org/wiki/Solid-state_battery

    Materials proposed for use as electrolytes include ceramics (e.g., oxides, sulfides, phosphates), and solid polymers. Solid-state batteries are found in pacemakers, and in RFID and wearable devices [citation needed]. Solid-state batteries are potentially safer, with higher energy densities.

  8. Separator (electricity) - Wikipedia

    en.wikipedia.org/wiki/Separator_(electricity)

    Diagram of a battery with a polymer separator. A separator is a permeable membrane placed between a battery's anode and cathode.The main function of a separator is to keep the two electrodes apart to prevent electrical short circuits while also allowing the transport of ionic charge carriers that are needed to close the circuit during the passage of current in an electrochemical cell.

  9. Molten-salt battery - Wikipedia

    en.wikipedia.org/wiki/Molten-salt_battery

    The ZEBRA's liquid electrolyte freezes at 157 °C (315 °F), and the normal operating temperature range is 270–350 °C (520–660 °F). Adding iron to the cell increases its power response. [16] ZEBRA batteries are currently manufactured by FZSoNick [18] and used as a power backup in the telecommunication industries, Oil&Gas and Railways. It ...

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