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posted by martyb on Monday April 06 2015, @08:47PM   Printer-friendly
from the better-hardware dept.

The Register reports

In a paper published at [Proceedings of the National Academy of Sciences] (abstract), the researchers claim capacitance of more than 1,100 Farads per cubic centimetre--or around 1,145 Farads per gram, which is about as much as they reckon you could get out of the manganese dioxide (MnO2) in the cap.

Using a combination of graphene and MnO2, the researchers say the energy density they can achieve can be as high as 42 Watt-hours per litre, which is getting close to that of a lead acid battery.

It's not much yet: the demonstrator pictured below from the UCLA California NanoSystems Institute is one-fifth the thickness of paper, however it can hold charge long enough to power the demo LED overnight.

That, the university claims, beats a thin-film lithium battery on a pound-for-pound (or rather gram-for-gram) basis.

Manganese dioxide is cheap and plentiful, and is good at storing charge--which is why it's popular in dry-cell batteries and alkaline batteries.

The combination of the MnO2 and laser-etched graphene--the secret sauce in all of this--can be produced without dry rooms or extreme temperatures.

 
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  • (Score: 2, Interesting) by JJ on Monday April 06 2015, @10:54PM

    by JJ (5043) on Monday April 06 2015, @10:54PM (#167225)

    From what an Engineer who's worked on electric cars told me...

    Super Capacitors are required to store the energy from braking as regular batteries can't charge fast enough.
    Super caps act as a buffer between the braking and the batteries - which are usually better for long term storage - but maybe not in this case?

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