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As an extreme heat wave continues across the southern US and threatens to spread north, here are five ways EV drivers can keep their cars running in the face of record-breaking high temperatures.

Park in the shade. If parking your EV in the shade is further away from your office or the supermarket, go ahead and take a walk. Parking in the shade on a hot day is particularly good for EVs, as it helps reduce the car’s temperature and protects the battery from overheating.

According to the National Renewable Energy Laboratory, parking an EV in direct sunlight can cause the battery temperature to increase by up to 12F, but parking in the shade can keep the battery temperature at or below the ambient temperature.

Keep your EV battery charged to 80%. High temperatures can cause an EV battery to degrade faster. Keep the battery charged to ensure your EV has the power it needs.

Keeping a battery charged between 20-80% can help prolong its lifespan, while letting it sit at more than 80% for extended periods can cause it to degrade faster. Also, plan your driving route so that you use your battery power wisely.

Use air conditioning sparingly. Don’t blast the AC – it can reduce the range of your EV. Precondition the car before you enter, preferably while it’s still plugged in, which can help reduce the amount of time needed to run the AC. And if you don’t need it, turn the temperature up, or turn it off.

Monitor tire pressure. Extreme heat causes your tires to expand, and that can lead to overinflation and reduce an EV’s range. So monitor the tire pressure regularly and adjust it as needed.

You can find the recommended tire pressure for your EV in the owner’s manual, inside the driver’s side door, or on the car’s computer screen (that’s where I check it for my Tesla Model 3). Keeping the tires inflated to the correct pressure improves overall efficiency.

Avoid DC fast charging in extreme heat. Extreme heat affects charging speed, so choose cooler times of day for DC fast charging – if you have to fast charge. During peak hours, some DC fast charging stations may slow down speeds to manage demand, which helps to ensure that they don’t overheat.

Thanks to Kate Harrison, cofounder at MoveEV, as we referenced her article for this post.


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IEA: Renewables and AI are rapidly transforming the world’s energy future

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IEA: Renewables and AI are rapidly transforming the world’s energy future

The International Energy Agency (IEA) says renewables and AI are reshaping the world’s energy future, and that transformation is happening faster than anyone expected. In its new “World Energy Outlook 2025,” the IEA warns that energy security risks now stretch far beyond oil and gas. Critical minerals essential to clean tech, defense, and AI have become the new fault lines in global supply chains. The IEA also states that energy has become a central focus of geopolitical power struggles, making it one of the defining economic and security challenges of our time.

A more complex, electrified future

The IEA’s annual “World Energy Outlook” explores three possible scenarios for the future, emphasizing that none are predictions. Instead, they’re roadmaps that show what could happen depending on the choices governments and industries make on policy, technology, and investment.

Across every scenario, one theme stands out: electricity demand is surging faster than for any other form of energy. Electricity currently accounts for only about 20% of global energy use, yet it powers more than 40% of the global economy. Fatih Birol, the IEA’s executive director, said the trend is accelerating: “Last year, we said the world was moving quickly into the Age of Electricity – and it’s clear today that it has already arrived.”

Driving that growth are data centers, AI, and electrification across transportation, heating, and manufacturing. Global data center investment alone is expected to hit $580 billion in 2025 – even higher than the $540 billion the world will spend on oil supply.

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Shifting global energy dynamics

Emerging economies, led by India and Southeast Asia, are now shaping energy markets that were once dominated by China. These regions are experiencing a rapid increase in demand for power, mobility, and industrial energy use. By 2035, 80% of global energy consumption growth is expected to come from countries with high solar potential.

At the same time, the IEA warns that grid expansion and storage aren’t keeping up with this growth. While investments in power generation have jumped nearly 70% since 2015, spending on transmission and distribution has risen at less than half that pace. The agency calls for urgent grid upgrades and stronger government coordination to prevent future electricity bottlenecks.

Renewables and nuclear on the rise

Solar leads the charge across all IEA scenarios, with renewables growing at a faster rate than any other energy source. Nuclear energy is also making a comeback: after two decades of stagnation, global nuclear capacity is projected to increase by at least a third by 2035, thanks to both large-scale projects and small modular reactor designs.

Dave Jones, chief analyst at global energy think tank Ember, said, “The world is moving in the right direction, and continued acceleration can drive a more rapid transformation of the energy system. Renewables and electrification will dominate the future – and fossil-importing nations will gain the most by embracing them.”

Energy access and climate urgency

The IEA highlights two critical areas where the world is falling short: universal access to energy and climate goals. Roughly 730 million people still live without electricity, and nearly 2 billion rely on polluting cooking methods. Even in the agency’s most ambitious pathways, global temperatures surpass 1.5C of warming before potentially returning below that level later in the century.

Meanwhile, the effects of climate change are already disrupting energy systems. In 2023 alone, over 200 million households worldwide were affected by energy infrastructure failures, with transmission lines accounting for about 85% of incidents. The IEA says governments must prioritize resilience not only against extreme weather but also against cyberattacks and supply chain shocks.

Birol summed it up: “When we look at the history of the energy world in recent decades, there is no other time when energy security tensions have applied to so many fuels and technologies at once. With energy security front and center for many governments, their responses need to consider the synergies and trade-offs that can arise with other policy goals – on affordability, access, competitiveness, and climate change.”


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Tesla releases confusing hint about launching in Colombia

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Tesla releases confusing hint about launching in Colombia

Tesla has released a confusing hint that appears to tease a launch in Colombia, which would be Tesla’s second market in South America.

For the last few years, Tesla has been looking to launch its electric vehicles in South America, but progress has been slow.

Last year, Tesla opened its first Supercharger stations in Chile, and opened its first store last month.

Now, Tesla appears to be teasing a launch in Colombia as it posted an image with the outline of the country:

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The confusing part is the fact that this was posted on Tesla’s official ‘North America’ account. The automaker doesn’t appear to have a South America or Americas account yet, despite having launched in Chile already.

Tesla won’t be the first automaker to sell electric cars in Colombia. It will have to compete with Chinese electric automakers BYD and Zeekr, which have already entered the market.

Colombia has a reasonably small auto market. From its highs of ~300,000 passenger cars per year in the 2010s, it has never recovered, and it currently registers about 200,000 new cars per year.

Electric vehicles still account for only a small share of the market, as more charging infrastructure needs to be deployed and more automakers need to launch electric models.

Electrek’s Take

This is excellent news. When Tesla launches in a new market, it generally deploys charging infrastructure—DC fast chargers, Superchargers, and level 2 chargers.

Electricity is relatively cheap in the country, and with the proper charging infrastructure, which Tesla excels at, it should help accelerate EV adoption in the country – even though Tesla’s own EV are on the expensive side for the Colombian market.

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This is the first ever semi-solid-state battery going into a production e-bike

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This is the first ever semi-solid-state battery going into a production e-bike

Solid-state batteries have long been the holy grail of electric vehicles, especially for light EVs like electric bicycles that are usually charged indoors. They hold major safety benefits over traditional lithium-ion batteries, plus offer better energy density, making it possible to use smaller batteries or simply fit more capacity in the same-sized battery pack.

Solid-state batteries have spent decades being touted as five years away, but if you thought you’d have to keep waiting, then I’ve got news for you: yes, you still have to keep waiting.

However, in the meantime, semi-solid-state batteries are here and will be launched on their first production e-bike next month.

I had the chance to check out the batteries in person at EICMA 2025 when I visited with the company that makes them, T&D. The company was spun out of e-bike component maker Bafang (and founded by the same co-founder of Bafang, Sunny He) in order to move more in the direction of electric motorcycle component development.

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In addition to their drivetrain components, a significant portion of their R&D has also focused on semi-solid-state batteries, which contain a minimal amount of electrolyte compared to traditional lithium-ion batteries found in today’s e-bikes. With a fraction of the electrolyte material, these semi-solid-state batteries developed by T&D are more energy-dense and safer than traditional batteries. The cells can be stabbed through by a nail and won’t ignite – don’t try that with the battery on your current e-bike!

Whereas most e-bike batteries today have an energy density of around 150-250 Wh/kg, these new semi-solid-state batteries push the needle even further into the 250-350 Wh/kg ballpark, depending on the specific packaging.

The cells are also rated for long cycle lifespan, with an expected 1,500 charge cycles before reaching 70% of the original capacity. And with fast-charging support, those same cells can be recharged significantly more quickly.

T&D’s semi-solid-state batteries will roll out on their first production e-bike next month, though the company isn’t at liberty to announce which e-bike maker will land the title of first production electric bike with semi-solid-state batteries. Hopefully we’ll hear that announcement soon.

T&D is also known for its e-moto drivetrains. The company’s new Equator City commuter e-moped project, launched in collaboration with Dimentro, utilizes T&D’s swingarm-mounted motor system.

The drivetrain offers 11 kW of peak power, a 5 kWh high-capacity LFP battery, and supports a range of over 100 km (62 miles).

Other projects featuring T&D’s drivetrains at the booth included interesting examples such as a part go-kart, part tractor project that resembles a heavy-towing ATV.

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