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All-day radiative cooling materials for near-zero-energy thermal management

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All-day radiative cooling materials for near-zero-energy thermal management

Technology Introduction:
For sustainable energy-efficient applications, through advanced optical engineering, our novel passive daytime radiative cooling (PDRC) materials exhibit high average reflectivity or transparency (>95%) in the solar wavelength region and high average emissivity (>95%) in the atmosphere window wavelength region. We anticipate that these PDRC materials will effectively mitigate the urban heat island effect, improve the low-grade waste heat recovery and reduce carbon dioxide emissions.
Industry Applicability:
The PDRC metamaterials can provide the great potential to accelerate the pace of net-zero emissions to limit global warming. Also, PDRC films provide a facile, eco-friendly cooling solution to dissipate trapped heat in optoelectronic devices, such as solar panels. The attractive power generation ability of the PDRC/TEG system suggests its great potential in low-grade waste heat recovery and environmental energy harvesting by consistently generating power in both the daytime and nighttime.

National Tsing Hua University

National Tsing Hua University (NTHU), established in 1911 and located in Hsinchu, Taiwan, is one of the top research universities in the country. NTHU offers a wide range of programs in fields such as engineering, science, management, and humanities. The university is known for its strong emphasis on innovation, research excellence, and fostering global perspectives. With a commitment to academic rigor and interdisciplinary collaboration, NTHU plays a key role in advancing knowledge and technological development, contributing to both Taiwan’s growth and the global academic community.

Contact

  • Name:

  • Phone:03-571-5131 #35511

  • Address:No. 101, Section 2, Kuang-Fu Road, Hsinchu City

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Other Information

  • Pavilion:Future Tech Evolutionary Materials & Chemical FG03

  • Affiliated Ministry:National Science and Technology Council

  • Application Field:Materials & Chemical Engineering & Nanotech

Location More info

Patent

  • 11821697

    • Patent Name
    • Application Country
    • Patent type
    • Assignee
    • Application Number
    • Publish Number
    • Patent Name

      Composite heat dissipation device and preparation method and applications thereof

    • Application Country

      United States of America、USA

    • Patent type

      Utility Invention

    • Assignee

      國立清華大學

    • Application Number

      US17747880

    • Publish Number

      11821697

Website & Links

  • Technology maturity:Others

  • Exhibiting purpose:Display of scientific results

  • Trading preferences:Negotiate by self

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