Earlier quoted context omitted.
It's a conductor of electricity. But super good at it. i.e. - It has zero resistance to electricity. Currently, the best superconducting materials we can create have to be chilled to near absolute zero, which means designing them to work in liquid helium baths. This is expensive, and difficult. If a material can superconduct at room temperature, now we're talking usage in general purpose consumer goods. As for why we…
Would help with fusion, right?
A room-temperature superconductor? New developments
311–320 of 821 posts
Re: A room-temperature superconductor? New developments
#312I'm glad to hear that I'm not the only one who thought that the DFT computational preprints were very promising. Unfortunately, they also indicate that the desired substitution will be very hard to achieve — crucially, the "crush and separate the composite" suggestion a few commenters have made is unlikely to work, since the heterogeneity exists within the same crystal, depending on whether Cu substitutes into Pb {1}…
Kinda? You'd expect flat bands from putting a copper atom into a big insulating supercell. The population of the d band is interesting, though. I don't find it super super compelling, but it's certainly not nothing.
Re: A room-temperature superconductor? New developments
#313Re: A room-temperature superconductor? New developments
#314I still have a very, very hard time understanding what all of this means. Is there an easy to understand explanation for a room temperature superconductor?
Superconductor are more efficient at transmitting energy, here are some consequences: - Cheaper electricity transportation - New kind of batteries - Consumer devices that don't heat up as you use them - Simplifies the design of fusion reactors, which means we could have fusion sooner and cheaper - Probably lots of things we can't even think of If this is true, then you still have a lot of time before you can do indus…
And now I’m imagining a superconducting toaster. Such frustration!
Re: A room-temperature superconductor? New developments
#315Earlier quoted context omitted.
I saw a video the other day that pointed out that the breakdown current for their sample was 260 mA. Now there's a lot of things you can do with 260mA, but I don't believe high-tesla electromagnets are in that list, so no MRIs, no fusion, and probably no electromotive devices (generators, motors).
It took 80 years to go from a crude prototype at Bell Labs to Apple announcing the M1. We just need to know it’s possible. The rest will follow.
Isn’t the introduction of the 4004 in 1971 a better comparison? while that was still 24 years since the Bell labs discovery, we have much better scientific, manufacturing, logistical and mining ecosystems within industry and research today.
If there’s a compelling reason to do so, governments will find ways to accelerate the development of those ecosystems from decades to years (probably more like a decade).
Re: A room-temperature superconductor? New developments
#316Earlier quoted context omitted.
It certainly doesn't hurt that this thing levitates . No need to squint into a microscope, parse a screen full of numbers, or try to make sense of false-color renderings. Either you have video proof of a levitating object, or you don't. The demonstration is as intuitive as it gets, despite the fact that the theory is crazy difficult to wrap one's head around.
Levitates? Against, what, the earth's inherent magnetic field? Sorry, I haven't seen any visuals that show this behavior.
Re: A room-temperature superconductor? New developments
#317Earlier quoted context omitted.
I want to believe. After several millennia of killing people for gold, we can finally put all that gold to good use—using it to create superconductors that can power energy weapons we can use to kill each other. ♫ It's the circle of life ♫
People cut cables for copper. Imagine what will happen with cables with gold.
ETA: I was off by an order of magnitude (originally I said sub-1%) because the doping is extensive, and the mass of the lead/gold is a dominant fraction of the total. The formula given in the paper is (subscripts in brackets):
Pb[10−x]Cu[x](PO4)[6]O with 0.9 Similarly for Au we would have Pb[10−x]Au[x](PO4)[6]O. Taking the centerpoint x=1, this becomes Pb[9]Au[1](PO4)[6]O. In other words, there would be one gold atom for every 9 lead atoms.
The "unit cell weight" is 2647.59 g/mol, and the molar mass of gold is 196.97 g/mol, so in fact the hypothetical gold weight content is about 7.44%, not sub-1%.
That said -- presumably superconducting transmission wires would be thinner than the ones we are used to (a function of critical current rather than resistance). So I'm not sure that we'd have a theft problem worse than we already have with copper.
Re: A room-temperature superconductor? New developments
#318This is exciting, but I try to maintain my composure. Good luck to all involved. I didn’t know science could be such a thrilling spectator sport.
I saw a video the other day that pointed out that the breakdown current for their sample was 260 mA. Now there's a lot of things you can do with 260mA, but I don't believe high-tesla electromagnets are in that list, so no MRIs, no fusion, and probably no electromotive devices (generators, motors).
Re: A room-temperature superconductor? New developments
#319This is exciting, but I try to maintain my composure. Good luck to all involved. I didn’t know science could be such a thrilling spectator sport.
I saw a video the other day that pointed out that the breakdown current for their sample was 260 mA. Now there's a lot of things you can do with 260mA, but I don't believe high-tesla electromagnets are in that list, so no MRIs, no fusion, and probably no electromotive devices (generators, motors).
Re: A room-temperature superconductor? New developments
#320Earlier quoted context omitted.
I want to believe. After several millennia of killing people for gold, we can finally put all that gold to good use—using it to create superconductors that can power energy weapons we can use to kill each other. ♫ It's the circle of life ♫
People cut cables for copper. Imagine what will happen with cables with gold.