> 750 Wh/kg is great. To put it mildly. Energy density in the current leaders in that category, lithium ion batteries, 250-270 wh/kg. So, provided a similar or better ratio of watt-hours to unit of volume, we’re basically looking at tripling the energy storage of EVs or significant weight reduction, in the ideal scenario of this design being a safe and cost effective replacement for current batteries.
I think for the EV skeptics it’s easy to forget how fast battery chemistry has been evolving. There’s an common assumption that the EV status quo of 300 mile range at barely-affordable prices will continue forever, and therefore with all the woes surrounding charging and bad weather affecting range, EVs are dead in the water. Ten years ago $30k got you 75 miles of range out of a Nissan Leaf. Fast forward to present d…
Tell HN: I think I found Toyota's battery
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Re: Tell HN: I think I found Toyota's battery
#22This will be neat if it works but really there isn't going to be a huge market for 500+ mile cars vs the cost savings of getting a 300-400 mile car. The exception might be road-trippers and people who do a lot of towing but I suspect that is a much smaller population than people tend to think.
Americans don't buy cars anymore, though; not really. They buy ludicrous gigantic heavy pickups and SUVs. So what we're really talking about is getting decent range into oversized pickups that their owners want to accelerate like sports cars and still have a nice air-conditioned interior even when it's 150 degrees on the pavement due to climate change.
Re: Tell HN: I think I found Toyota's battery
#23This will be neat if it works but really there isn't going to be a huge market for 500+ mile cars vs the cost savings of getting a 300-400 mile car. The exception might be road-trippers and people who do a lot of towing but I suspect that is a much smaller population than people tend to think.
Re: Tell HN: I think I found Toyota's battery
#24How bad is it in real world conditions? Because from what I'm reading it's not the "it makes you sick" kind of toxic, but rather the "it kills you in seconds" kind of toxic.
Re: Tell HN: I think I found Toyota's battery
#25> 750 Wh/kg is great. To put it mildly. Energy density in the current leaders in that category, lithium ion batteries, 250-270 wh/kg. So, provided a similar or better ratio of watt-hours to unit of volume, we’re basically looking at tripling the energy storage of EVs or significant weight reduction, in the ideal scenario of this design being a safe and cost effective replacement for current batteries.
Out of curiosity, What is the wh/kg for petrol?
Re: Tell HN: I think I found Toyota's battery
#26This will be neat if it works but really there isn't going to be a huge market for 500+ mile cars vs the cost savings of getting a 300-400 mile car. The exception might be road-trippers and people who do a lot of towing but I suspect that is a much smaller population than people tend to think.
People like having extra capacity even if they scarcely use that capacity. This is why the F150 is the best selling car in America. Not to mention its better in general to have extra battery capacity than you might reasonably need today, as it will degrade with age, or temperature.
Re: Tell HN: I think I found Toyota's battery
#27> 750 Wh/kg is great. To put it mildly. Energy density in the current leaders in that category, lithium ion batteries, 250-270 wh/kg. So, provided a similar or better ratio of watt-hours to unit of volume, we’re basically looking at tripling the energy storage of EVs or significant weight reduction, in the ideal scenario of this design being a safe and cost effective replacement for current batteries.
Out of curiosity, What is the wh/kg for petrol?
Fuel Energy by mass (Wh/kg) Energy by volume (Wh/l)
Diesel fuel 12,700 10,700
Gasoline 12,200 9,700
Natural gas (250 bar) 12,100 3,100
Body fat 10,500 9,700
Re: Tell HN: I think I found Toyota's battery
#28This will be neat if it works but really there isn't going to be a huge market for 500+ mile cars vs the cost savings of getting a 300-400 mile car. The exception might be road-trippers and people who do a lot of towing but I suspect that is a much smaller population than people tend to think.
Since it's a bit more than a doubling of energy density, it's less that you can get a 500+ mile car and more that you can drop the price & weight of a 300-400 mile car. Imagine cutting the weight of an EV battery by 500 pounds while maintaining its current capacity. All that weight savings will probably get you some additional range, and save you on cost of materials, meaning you could cut the battery down a bit more…
Re: Tell HN: I think I found Toyota's battery
#29This will be neat if it works but really there isn't going to be a huge market for 500+ mile cars vs the cost savings of getting a 300-400 mile car. The exception might be road-trippers and people who do a lot of towing but I suspect that is a much smaller population than people tend to think.
This is analogous to how people thought nobody would need a 100 GB hard disk on their personal computer when 1 GB hard disks were the norm.
Re: Tell HN: I think I found Toyota's battery
#30Earlier quoted context omitted.
I think for the EV skeptics it’s easy to forget how fast battery chemistry has been evolving. There’s an common assumption that the EV status quo of 300 mile range at barely-affordable prices will continue forever, and therefore with all the woes surrounding charging and bad weather affecting range, EVs are dead in the water. Ten years ago $30k got you 75 miles of range out of a Nissan Leaf. Fast forward to present d…
Are batteries still on a roughly 3-4% annual rate of improvement? Or has that shifted? So,e of that will have been aerodynamics (the industry is slowly boiling the frog on styling vs aerodynamics) and motor efficiency, which has climbed a lot in the last 15 years.
[0] https://www.statista.com/statistics/883118/global-lithium-io...