• New solar panel tech could trap heat for 1,000 times longer to be

    From TechnologyDaily@1337:1/100 to All on Saturday, September 19, 2026 17:45:21
    New solar panel tech could trap heat for 1,000 times longer to beat a long-standing limit in energy production

    Date:
    Sat, 19 Sep 2026 16:30:00 +0000

    Description:
    A new discovery about tin-based solar panels means the long-standing 33%
    limit could eventually be breached.

    FULL STORY ======================================================================Copy link Facebook X Whatsapp Reddit Pinterest Flipboard Threads Email Share this article 0 Join the conversation Follow us Add us as a preferred source on Google Newsletter Subscribe to our newsletter New and improved solar panel materials have been analyzed Two key physics effects combine to create the improvements It could help panels break through the 33% energy conversion
    rate There's a long-standing physics theory that suggests solar panels will only ever be able to convert a maximum of 33% of the sunlight that comes
    their way, but a team from the University of Groningen in the Netherlands has detailed a way to harvest extra energy from 'hot' electrons that could push through this limit.

    Solar panels work by using the photons from sunshine to jump-start electrons. With the most energetic photons, the result is super-charged, so-called hot electrons, that have the potential to generate significantly more electricity
    but the problem is they cool down too quickly and lose the energy as heat before it can be captured. This new research builds on previous studies reporting a promising new tin-based solar panel material. The material has demonstrated it can keep the heat from hot electrons trapped for around 1,000 times longer but there have been competing ideas about the mechanism making that possible. Latest Videos From TechRadar Watch full video here:

    Trying to clarify what was going on, though a series of computer simulations and experimental measurements, was the purpose of the new research: understanding the material's key properties will help scientists build on the potential of the material and potentially scale it up into something that's viable commercially. Ultra-long cooling Two physics effects are essential for the upgrades reported by scientists (Image credit: Faber et al., ACS Energy Letters, 2026) The analysis carried out by the researchers determined that there were two different actions at work. First, an effect called a hot
    phonon bottleneck creates a heat trap: as the environment around the buzzing electrons warms up so quickly, the electrons end up reabsorbing the thermal energy again, keeping their heat for longer. You may like New solar panel design could increase could increase daily PV energy production by 20% Solar energy sets new UK record as plug-in solar kits head for shelves Scientists reveal solar panels that work for years at 10 meters underwater

    Second, what's known as the Burstein-Moss effect creates an atomic traffic jam. As hot electrons cool, they quickly fill up the lowest available energy states in the material, which means other hot electrons can't lose their heat as quickly it's like an airplane filling up from the front, with passengers arriving later having to walk all the way to the back.

    These two effects were already known about, but now we know they're the
    reason that these special solar panel materials work and that in combination they provide the extended hot electron cooling that might help to nudge
    future solar panels above that crucial 33% ceiling, and create clean energy more efficiently. Get daily insight, inspiration and deals in your inbox Sign up for breaking news, reviews, opinion, top tech deals, and more. Contact me with news and offers from other Future brands Receive email from us on behalf of our trusted partners or sponsors By submitting your information you agree to the Terms & Conditions and Privacy Policy and are aged 16 or over.

    "It is the simultaneous satisfaction of these electronic, phononic, and chemical criteria, operating under high-injection conditions, that enables
    the ultra-long cooling times necessary for practical devices," write the researchers in their published paper, which appears in the journal ACS Energy Letters . The best laptops for all budgets Our top picks, based on real-world testing and comparisons

    Read our full guide to the best laptops 1. Best overall: Apple MacBook Air 13-inch M5 2. Best budget: Apple MacBook Neo 3. Best Windows 11 laptop Microsoft Surface Laptop 13-inch 4. Best thin and light: Lenovo Yoga Slim 9i 5. Best Ultrabook Asus Zenbook S 16 Follow TechRadar on Google News and add
    us as a preferred source to get our expert news, reviews, and opinion in your feeds.



    ======================================================================
    Link to news story: https://www.techradar.com/home/energy-saving/new-solar-panel-tech-could-trap-h eat-for-1-000-times-longer-to-beat-a-long-standing-limit-in-energy-production


    --- Mystic BBS v1.12 A49 (Linux/64)
    * Origin: tqwNet Technology News (1337:1/100)