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#thermoelectrics — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #thermoelectrics, aggregated by home.social.

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  1. Hydrogen ICE Development Takes Big Steps Toward Commercialization

    September 11, 2026 Ryan Gehm Truck makers and engine technology manufacturers continue to refine hydrogen-powered internal combustion engines…
    #Germany #DE #Europe #EU #Europa #DaimlerTruck #alternativefuels #batteries #CommercialVehicles #energy #EnergyEfficiency #MannedSystems #Thermoelectrics #trucks
    europesays.com/germany/89853/

  2. This Startup Aims To Catapult Satellites Into Space

    Catapulting satellites into space. Making all the data center heat useful. Why memory technology needs disrupting. All that…
    #NewsBeep #News #Space #AI #AU #Australia #DataCenters #electricity #electromagneticlaunch #powergrid #Rocket #roi #Science #SpaceX #thermoelectrics
    newsbeep.com/au/792133/

  3. This Startup Aims To Catapult Satellites Into Space

    Catapulting satellites into space. Making all the data center heat useful. Why memory technology needs disrupting. All that…
    #NewsBeep #News #Space #AI #datacenters #Electricity #electromagneticlaunch #powergrid #Rocket #roi #Science #SpaceX #thermoelectrics #UK #UnitedKingdom
    newsbeep.com/uk/684949/

  4. Scientists have created a material that generates energy from temperature changes, hinting at a future where solar power no longer needs panels

    by Anke
    April 23, 2026

    Excerpt: "The 'Honeycomb' barrier to break energy loss barriers

    "Converting heat into electricity is a rising trend in the engineering world. However, #thermoelectrics have always been considered too inefficient for wide-scale use, until now.

    "Scientists from the Seoul National University (#SNU) College of Engineering created a new material with high-performance #thermoelectric properties.

    "You can review their study 'Facile and scalable strategy for fabricating dense bulk Ag2Se as a high-performance thermoelectric material,' published in Advanced Composites and Hybrid Materials.

    "The team’s design is based on #SilverSelenide (#Ag2Se) and operates on the #SeebeckEffect, producing voltage from temperature gradients.

    "Blocking heat while boosting the power factor

    "Ag2Se was scaled into nanoflakes and arranged in a honeycomb-like layout.

    "Heat-carrying vibrations (#phonons) are scattered in the structure, preventing the temperature from leveling across the material.

    "The material was 'doped' with #silver, which boosted the power factor by 300%, enabling electron flow despite the thermal barrier.

    "This breakthrough in thermoelectric materials effectively renders the need for panels unnecessary.

    "The highly efficient, thin, and flexible film has a series of application possibilities. Building integration enables solar power production from heat during the day and energy harvesting as the building cools at night.

    "Flexible thermoelectric patches can power IoT devices, eliminating the use of batteries. Using the material at data centers creates a circular energy economy within digital infrastructure itself."

    Read more:
    energiesmedia.com/solar-materi

    #Thermoelectric Materials [Wikipedia]:
    en.wikipedia.org/wiki/Thermoel

    #SolarPunkSunday #Technology #TechnologyBreakthrough #Renewables #EnergyGeneration #Thermoelectrics

  5. Scientists have created a material that generates energy from temperature changes, hinting at a future where solar power no longer needs panels

    by Anke
    April 23, 2026

    Excerpt: "The 'Honeycomb' barrier to break energy loss barriers

    "Converting heat into electricity is a rising trend in the engineering world. However, #thermoelectrics have always been considered too inefficient for wide-scale use, until now.

    "Scientists from the Seoul National University (#SNU) College of Engineering created a new material with high-performance #thermoelectric properties.

    "You can review their study 'Facile and scalable strategy for fabricating dense bulk Ag2Se as a high-performance thermoelectric material,' published in Advanced Composites and Hybrid Materials.

    "The team’s design is based on #SilverSelenide (#Ag2Se) and operates on the #SeebeckEffect, producing voltage from temperature gradients.

    "Blocking heat while boosting the power factor

    "Ag2Se was scaled into nanoflakes and arranged in a honeycomb-like layout.

    "Heat-carrying vibrations (#phonons) are scattered in the structure, preventing the temperature from leveling across the material.

    "The material was 'doped' with #silver, which boosted the power factor by 300%, enabling electron flow despite the thermal barrier.

    "This breakthrough in thermoelectric materials effectively renders the need for panels unnecessary.

    "The highly efficient, thin, and flexible film has a series of application possibilities. Building integration enables solar power production from heat during the day and energy harvesting as the building cools at night.

    "Flexible thermoelectric patches can power IoT devices, eliminating the use of batteries. Using the material at data centers creates a circular energy economy within digital infrastructure itself."

    Read more:
    energiesmedia.com/solar-materi

    #Thermoelectric Materials [Wikipedia]:
    en.wikipedia.org/wiki/Thermoel

    #SolarPunkSunday #Technology #TechnologyBreakthrough #Renewables #EnergyGeneration #Thermoelectrics

  6. Scientists have created a material that generates energy from temperature changes, hinting at a future where solar power no longer needs panels

    by Anke
    April 23, 2026

    Excerpt: "The 'Honeycomb' barrier to break energy loss barriers

    "Converting heat into electricity is a rising trend in the engineering world. However, #thermoelectrics have always been considered too inefficient for wide-scale use, until now.

    "Scientists from the Seoul National University (#SNU) College of Engineering created a new material with high-performance #thermoelectric properties.

    "You can review their study 'Facile and scalable strategy for fabricating dense bulk Ag2Se as a high-performance thermoelectric material,' published in Advanced Composites and Hybrid Materials.

    "The team’s design is based on #SilverSelenide (#Ag2Se) and operates on the #SeebeckEffect, producing voltage from temperature gradients.

    "Blocking heat while boosting the power factor

    "Ag2Se was scaled into nanoflakes and arranged in a honeycomb-like layout.

    "Heat-carrying vibrations (#phonons) are scattered in the structure, preventing the temperature from leveling across the material.

    "The material was 'doped' with #silver, which boosted the power factor by 300%, enabling electron flow despite the thermal barrier.

    "This breakthrough in thermoelectric materials effectively renders the need for panels unnecessary.

    "The highly efficient, thin, and flexible film has a series of application possibilities. Building integration enables solar power production from heat during the day and energy harvesting as the building cools at night.

    "Flexible thermoelectric patches can power IoT devices, eliminating the use of batteries. Using the material at data centers creates a circular energy economy within digital infrastructure itself."

    Read more:
    energiesmedia.com/solar-materi

    #Thermoelectric Materials [Wikipedia]:
    en.wikipedia.org/wiki/Thermoel

    #SolarPunkSunday #Technology #TechnologyBreakthrough #Renewables #EnergyGeneration #Thermoelectrics

  7. Scientists have created a material that generates energy from temperature changes, hinting at a future where solar power no longer needs panels

    by Anke
    April 23, 2026

    Excerpt: "The 'Honeycomb' barrier to break energy loss barriers

    "Converting heat into electricity is a rising trend in the engineering world. However, #thermoelectrics have always been considered too inefficient for wide-scale use, until now.

    "Scientists from the Seoul National University (#SNU) College of Engineering created a new material with high-performance #thermoelectric properties.

    "You can review their study 'Facile and scalable strategy for fabricating dense bulk Ag2Se as a high-performance thermoelectric material,' published in Advanced Composites and Hybrid Materials.

    "The team’s design is based on #SilverSelenide (#Ag2Se) and operates on the #SeebeckEffect, producing voltage from temperature gradients.

    "Blocking heat while boosting the power factor

    "Ag2Se was scaled into nanoflakes and arranged in a honeycomb-like layout.

    "Heat-carrying vibrations (#phonons) are scattered in the structure, preventing the temperature from leveling across the material.

    "The material was 'doped' with #silver, which boosted the power factor by 300%, enabling electron flow despite the thermal barrier.

    "This breakthrough in thermoelectric materials effectively renders the need for panels unnecessary.

    "The highly efficient, thin, and flexible film has a series of application possibilities. Building integration enables solar power production from heat during the day and energy harvesting as the building cools at night.

    "Flexible thermoelectric patches can power IoT devices, eliminating the use of batteries. Using the material at data centers creates a circular energy economy within digital infrastructure itself."

    Read more:
    energiesmedia.com/solar-materi

    #Thermoelectric Materials [Wikipedia]:
    en.wikipedia.org/wiki/Thermoel

    #SolarPunkSunday #Technology #TechnologyBreakthrough #Renewables #EnergyGeneration #Thermoelectrics

  8. 'Achieving superior thermoelectric transport in bismuth antimony telluride thin films via orientation and microstructure regulation' - a 'National Science Open' #Research article by @EDPSciences on #ScienceOpen:

    🔗 scienceopen.com/document?vid=4

    #MaterialsScience #Thermoelectrics #Nanotechnology

  9. 'Achieving superior thermoelectric transport in bismuth antimony telluride thin films via orientation and microstructure regulation' - a 'National Science Open' #Research article by @EDPSciences on #ScienceOpen:

    🔗 scienceopen.com/document?vid=4

    #MaterialsScience #Thermoelectrics #Nanotechnology

  10. So happy and proud to toot the first first author publication of one of my mentees, Alexandra Ivanova: "Thermoelectric properties of In1Co4Sb12+δ: role of in situ formed InSb precipitates, Sb overstoichiometry, and processing conditions". Now up on the Journal of Materials Chemistry A doi.org/10.1039/D2TA07625J #skutterudites #thermoelectrics

  11. Highly efficient thermoelectric generation, but only in the cold - The ideal crystalline structure of graphene is a hexagonal grid. (credit: CORE-Materials / Flickr) ... more: arstechnica.com/?p=1496945 #thermoelectricmaterial #thermoelectrics #graphene #science #peltier