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Subject Item
dbr:Aqueous_lithium-ion_battery
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水系リチウムイオン電池 Aqueous lithium-ion battery
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水系リチウムイオン電池(Aqueous lithium-ion battery)とは水溶液系のイオン液体を電解質として使用するリチウムイオン電池。 An aqueous lithium-ion battery is a lithium-ion battery (Li-ion) that uses a concentrated saline solution as an electrolyte to facilitate the transfer of lithium ions between electrodes and induce an electrical current. In contrast to non-aqueous lithium-ion batteries, aqueous Li-ion batteries are nonflammable and do not pose any significant risks of explosion, because of the water-based nature of their electrolyte. They also lack the poisonous chemicals and environmental risks associated with their non-aqueous counterparts.
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dbc:Lithium-ion_batteries
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dbr:Lithium_bis(trifluoromethanesulfonyl)imide dbr:Coulombic_efficiency dbr:Lithium_manganese_oxide dbr:1,1,2,2-Tetrafluoroethyl-2′,2′,2′-trifluoroethyl_ether dbr:Electrical_current dbr:Vanadium_dioxide dbr:Energy_density dbr:Jeff_Dahn dbc:Lithium-ion_batteries dbr:Research_in_lithium-ion_batteries dbr:Electrochemical_window dbr:United_States_Army_Research_Laboratory dbr:University_of_Maryland dbr:Lithium-ion_battery dbr:Electrolysis_of_water dbr:Ion dbr:Electrolyte
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水系リチウムイオン電池(Aqueous lithium-ion battery)とは水溶液系のイオン液体を電解質として使用するリチウムイオン電池。 An aqueous lithium-ion battery is a lithium-ion battery (Li-ion) that uses a concentrated saline solution as an electrolyte to facilitate the transfer of lithium ions between electrodes and induce an electrical current. In contrast to non-aqueous lithium-ion batteries, aqueous Li-ion batteries are nonflammable and do not pose any significant risks of explosion, because of the water-based nature of their electrolyte. They also lack the poisonous chemicals and environmental risks associated with their non-aqueous counterparts. Aqueous Li-ion batteries are currently severely limited in use due to their narrow electrochemical window of stability (1.23 V). When built using conventional methods, an aqueous Li-ion has a much smaller energy density than a non-aqueous Li-ion battery and can only reach a maximum voltage of 1.5 volts. However, researchers from the University of Maryland (UMD) and the Army Research Laboratory (ARL) made it possible for an aqueous Li-ion battery to remain electrochemically stable at approximately 3.0 volts and withstand severe external damage to a degree not present in non-aqueous Li-ion batteries.
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