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OSU smart membrane could enable new category of high-energy, high-power energy storage for EVs

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The researchers, Travis Herya and Vishnu-Baba Sundaresan, call the membrane a “ smart membrane separator ” and define it as “ a programmable ionic conductor that exhibits continuously varying ionic impedance due to an external stimulus and applied in an energy storage device (supercapacitor or RFB).”. Travis Herya and Sundaresan (2016).

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Pike Research forecasts worldwide grid energy storage spending to reach $22B by 2021, down from 2010 forecast of $35B

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For the long-duration segment of the energy storage market, pumped hydro storage and advanced flow batteries will represent the largest portions of the total revenue opportunity during the next decade. This means that we will need 3x more battery capacity investments to meet 2020 EV demand. 2010 vs 2011 forecasts.