Solid-state battery developer QuantumScape has provided further evidence that it’s the real deal in eventually achieving scaled cell production that could one day enable EV modules that are safer, charge faster, and go farther. In the YouTube video below, QuantumScape explains the design of its FlexFrame battery cell, which expands and contracts… similar to a beating heart.
While it will likely still be quite a while before we see QuantumScape’s ($QS) solid-state battery technology in EVs available for purchase, the startup appears more poised than ever to be the one who finally cracks the code in reaching not only scaled production but seamless integration with current assembly practices and ideally, at or near cost parity with current lithium-ion cells.
It was 2022 when the advanced battery technology company first introduced the public to its 24-layer A0 prototype cells before sending them off to automotive partners for testing. In Q1 2023, we learned QuantumScape’s first commercial product would be a 5 amp-hour solid-state lithium metal battery cell we’ve learned is called the QSE-5.
Since then, QuantumScape has touted one performance milestone after another, achieving higher energy densities and exceeding its own targets. Earlier this month, PowerCo – the battery arm of longtime QuantumScape investor Volkswagen Group, confirmed the encouraging performance of the former’s A0 prototype cells via its own testing, providing further confidence in the technology as a viable improvement to current EV battery cells.
In a video posted today, QuantumScape digs into the design of the A0 prototype battery cells that enable the commercial design in the works. Here’s FlexFrame.
Source: QuantumScape/YouTube
QuantumScape explains its proprietary battery design
The YouTube video below features detailed explanations from QuantumScape’s principal product lead, Chris Dekmezian, senior director of cell design & manufacturing, Daniel Braithwaite, plus associate professor of mechanical & aerospace engineering at the University of Michigan, and QuantumScape consultant, Venkat Viswanathan.
The three individuals do an excellent job of clearly and concisely explaining how QuantumScape’s unique FlexFrame design works, what benefits the cells and their components serve, and what sort of nuances still need to be figured out before we see these cells packed into modules for passenger vehicles.
FlexFrame offers a unique battery solution that combines prismatic and pouch cell designs to safely handle the expansion and contraction of the solid-state battery during charging and discharging. All while giving QuantumScape’s lithium batteries the environment to perfect at their best. Check it out.
Source: QuantumScape/YouTube
There are truthfully dozens of juicy tidbits here we’d love to quote for you, but genuinely think the information is best served straight from the mouths of the experts.
While terms like “solid-state lithium metal” and “hosted anodes” may sound like intimidating terms, the guys at QuantumScape do an amazing job explaining the technology in great detail alongside the nuances already being addressed, looking forward to commercial production.
Take it away guys…
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Elon Musk implies that he’ll quit his part-time job as CEO of Tesla (TSLA) if he doesn’t get his $1 trillion pay package. On today’s episode of Quick Charge, I suggest GM’s Mary Barra should replace him, and explore some of the compelling EV deals out there looking to take a bite out of Elon’s market share.
In addition to my take on what the TSLA board should or shouldn’t decide, we’ve got a pile of EV lease deals, some hot, upcoming new electric Jeep models, and a look at some of the ways the end of the Federal EV tax credit isn’t the end at all.
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The US added more than 4,000 new DC fast-charging ports in Q3 2025, pushing the total past 64,000. The country’s EV infrastructure keeps maturing, despite new station openings slowing slightly this summer.
US DC fast-charging ports expand past 64,000
According to EV charging data platform Paren’s latest “State of the US Fast EV Charging Industry Report,” the number of public DC fast-charging ports climbed to 64,486 across 12,375 charging stations nationwide in Q3 2025. That’s despite a modest slowdown in new openings: Operators added 699 new stations, down 12% from Q2, and 4,061 new ports, down 7.7%.
Paren says the dip mirrors seasonal trends seen in 2024 and expects growth to rebound in Q4, with early October data already coming in strong. The company still projects the US to add around 16,700 new ports by the end of 2025. Notably, larger charging stations are becoming the norm: 27% of all stations now have eight or more stalls, up from 23% last quarter.
Tesla dominates new ports, and the market widens
Tesla led Q3 deployments with 1,820 new ports – nearly 45% of all added nationwide. ChargePoint (300), Red E (215), Electrify America (164), and EV Connect (146) rounded out the top five. But Paren notes that smaller and regional operators collectively accounted for 21% of new ports, demonstrating how the market is diversifying.
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Every state added at least one new fast-charging station this quarter. California again led the pack with 108 new sites, followed by Texas, New York, Florida, and Illinois. Upstart network Ionna, formed earlier this year by seven automakers, opened 12 new stations with 132 ports. At the same time, Michigan-based Red E jumped to third place after expanding across 18 states, including new sites at Aldi supermarkets.
Summer travel lifted fast charging demand
The summer travel season drove EV charging activity higher across almost the entire US. Fast charger use increased in 45 states, stayed flat in one, and dipped in five. Maine saw the biggest bump (+1.9 in utilization growth), followed by Montana (+1.8), New York (+1.8), and Oregon (+1.8), all reflecting busier tourism routes and expanding highway and corridor buildouts.
Paren also found signs that Tesla’s opening its Supercharger network to non-Tesla EV drivers is shifting behavior. Some non-Tesla charging stations saw slight utilization declines, suggesting a growing number of drivers are switching to Tesla’s network for convenience.
It’s all about reliability and upkeep
Paren’s “reliability index” measures charger reliability, taking into account recent successful charge sessions with and without retries, failed charge attempts, and station downtime over a specific time period.
Reliability based on Paren’s definition inched up again, from 92.1% to 92.3%. Thirty-two states improved their reliability scores this quarter, while 15 declined and four held steady. Oklahoma showed the biggest improvement (+4.4), though it still ranks last overall at 73.3%. Mississippi (91.1, +2.6) and Idaho (92.1, +2) also made solid gains, while Rhode Island (88.2, -2.7) and Alaska (96.3, -1.9) saw declines.
Paren says reliability now depends less on geography and more on operator performance, site age, and proactive maintenance. With more federally and state-funded chargers coming online, the focus is shifting from buildout to upkeep. Operators investing in preventive maintenance, faster outage response, and top-quality software integration will be best positioned to keep drivers happy.
Average fast-charging prices rose by a penny
Nationwide average pricing rose by a penny in Q3 to $0.49 per kilowatt-hour, with most states falling between $0.48 and $0.54. Hawaii remains the priciest at $0.85/kWh, while Nebraska is the cheapest at $0.42/kWh. Several charge point operators offered summer discounts and promotional rates, but Paren found no clear link between lower prices and higher use.
A few states saw notable price swings: Alaska jumped $0.04, while Arkansas dropped $0.05 and Hawaii fell $0.07. The jury’s still out on whether rates continue rising post-summer; that will depend on wholesale electricity costs, demand trends, and competition among networks.
Electrek’s Take
Paren’s Q3 snapshot shows a maturing charging market: slightly slower but steady growth, improving reliability, and broader competition. Tesla’s Superchargers are still leading the pack when it comes to the volume of new ports being rolled out. Still, the fast charging landscape is expanding with more regional players and multi-port hubs with both NACS and CCS capability across the map. A big priority now is to keep those chargers working and affordable as more people switch to EVs.
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Is it electric? A hybrid? A new Toyota crossover SUV was spotted testing out in public rocking a unique look.
New Toyota EV crossover and SUVs are coming soon
Toyota is gearing up to launch a series of new battery electric (BEV), hybrid, and plug-in hybrid (PHEV) vehicles over the next few years in nearly every market.
In the US, Toyota currently offers just one fully electric vehicle (excluding the Lexus RZ), the bZ (formerly the bZ4X), but that will soon change.
Toyota plans to offer seven fully electric vehicles by mid-2027, including under its luxury Lexus brand. Joining the updated bZ and Lexus RZ next year will be the smaller C-HR crossover and more rugged bZ Woodland SUVs.
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Shortly after, it will introduce two electric SUVs that Toyota will build at its plant in Kentucky. Although Toyota has yet to announce it publicly, the new electric SUVs are expected to be based on the RAV4 and Land Cruisers. They will replace the Lexus ES in Kentucky, while the next-gen EV version will be exported to the US from Japan.
From left to right: Toyota’s new C-HR+, bZ4X, and Urban Cruiser electric SUVs (Source: Toyota Europe)
In Europe, Toyota will launch the updated bZ4X, CH-R+, and Urban Cruisers by the end of the year. Three additional crossovers and SUVs are set to follow in 2026.
While we already know what most of those will looks like, the new crossover SUV doesn’t appear to be any of them. The spy photos from SH Proshots (via Autoevolution) show what looks to be the next-gen Toyota Venza, or the Harrier for those outside of the US.
You can tell it’s a bit taller and less aerodynamic than the electric crossover SUVs that Toyota showcased earlier this year.
The Venza was a bit of a step up from your average Toyota SUV with a more premium feel, but it was discontinued after the 2024 model year to make way for the Crown Signia.
Toyota RAV4 PHEV (Source: Toyota)
Although Toyota has yet to reveal anything about the next-gen Venza, rumors suggest it will be built on the TNGA-K platform, which underpins the new RAV4. The platform is designed to open up interior space with a lower center of gravity.
The new Toyota Audio Multimedia system (Source: Toyota)
Inside, you can expect to see Toyota’s latest Audio Multimedia system, which also debuted in the new RAV4. The setup includes a standard 10.5″ smartphone-like touchscreen infotainment or you can upgrade to the larger 12.9″ screen.
Given Toyota has yet to publicly announced the next-gen Venza, powertrain options is still up in the air. The report speculates it will arrive as a self-charging hybrid or plug-in hybrid (PHEV), or both.
Since it’s still in its early stages, the new model isn’t expected to launch until 2027. It could arrive as a 2028 model year in the US.
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