Physicists Build Circuit That Generates Clean, Limitless Power from Graphene (2020)

4 years ago (news.uark.edu)

Nope. Not reproduced since then. One of these classic "hey I've discovered an effect that is not properly isolated and contradicts brownian motion. Everything we know is probably wrong, let's publish about it rather than try to understand what we screwed up" moments.

This is from 2020.

Since the followup isn't "Arkansas Graphene Power 10GW plant comes online", it probably doesn't generate "clean, limitless power".

  • A previous time this came up, I had the impression that what it really does is extract energy from a temperature difference between the graphene and the load, which is in principle perfectly normal even is it's a new way to arrange the details.

    Edit: missed the link to the abstract.

    > However, there is power dissipated by the load resistor, and its time average is exactly equal to the power supplied by the thermal bath.

    So yeah, extracting power from a thermal bath sounds exactly like capturing energy as it flows down a temperature gradient.

  • At least not cheaply. As far as I'm aware (may be wrong) we still are unable to build graphene at scale, let alone graphene circuits.

Excerpts: "A team of University of Arkansas physicists has successfully developed a circuit capable of capturing graphene's thermal motion and converting it into an electrical current."

"The idea of harvesting energy from graphene is controversial because it refutes physicist Richard Feynman’s well-known assertion that the thermal motion of atoms, known as Brownian motion, cannot do work."

I didn't read the whole article, but from the schematics it looks like they are exploiting thermal electronic noise and applying a half-bridge rectifier to it so it produces very low voltage power.

On one hand, it's clearly bullshit due to the extravagant title claiming to violate the 2nd law of thermodynamics. On the other hand, if a system is sufficiently small than it can violate the 2nd law, locally. It seems the tour de force in this case is that the scale can be somewhat enlarged by the very low power of thermal electronic noise.

  • “This means that the second law of thermodynamics is not violated, " -Paul Thibado, professor, physics.

    Title is awful ofc but the actual scientist of course never claimed this.

Headline like these are automatically ignorable. Why is this even upvoted. "Limitless" power is just always false.

  • Even in utopian depictions of the future energy tends not to be limitless. Extremely abundant maybe, but never limitless. It seems strange to even pursue it.

    • In any possible Utopian future, our energy usage will expand to match our energy production. As more energy is produced, more uses is found to use it.

It's been two years, what is their progress? It has probably failed to be exploitable then ?

Limitless energy? Doesn’t that violate the first law?

Is this clickbait? Or, is there actual basis to the claim?

Kindly, someone who knows about this space elaborate?

  • I would read the article, it is easy to read and accessible.

    Here's the meat though.

    "Thibado’s team found that at room temperature the thermal motion of graphene does in fact induce an alternating current (AC) in a circuit, an achievement thought to be impossible.

    According to Kumar, the graphene and circuit share a symbiotic relationship. Though the thermal environment is performing work on the load resistor, the graphene and circuit are at the same temperature and heat does not flow between the two.

    That’s an important distinction, said Thibado, because a temperature difference between the graphene and circuit, in a circuit producing power, would contradict the second law of thermodynamics."

    • A circuit producing power without a temperature difference contradicts the second law of thermodynamics, which is what Thibado is claiming to have done.

    • Hard to see how this works when Brownian ratchets don't.

      Also: "Léon Brillouin in 1950 discussed an electrical circuit analogue that uses a rectifier (such as a diode) instead of a ratchet. The idea was the diode would rectify the Johnson noise thermal current fluctuations produced by the resistor, generating a direct current which could be used to perform work. In the detailed analysis it was shown that the thermal fluctuations within the diode generate an electromotive force that cancels the voltage from rectified current fluctuations. Therefore, just as with the ratchet, the circuit will produce no useful energy if all the components are at thermal equilibrium (at the same temperature); a DC current will be produced only when the diode is at a lower temperature than the resistor."

      https://en.wikipedia.org/wiki/Brownian_ratchet

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    • AC, eh?

      680kHz perhaps?

      The first thing they should do it hook up this radio frequency “AC” to a speaker and see if it sounds like country music or traffic reports.

      AC in a high impedance circuit is practically unavoidable, graphene or not.

    • This is pretty meaningless argument though. Ok, maybe it does not contradict the second law of thermodynamics. It still contradicts the conservation of energy though, and that's what matters!

      (It also does not contradict law of conservation of momentum, Boltzmann law, and San Francisco parking rules. Who cares?)

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