Exhibition

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.
Industrial Applications:
-

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 Information

Name:-
Tel:03-571-5131 #35511
Address:No. 101, Section 2, Kuang-Fu Road, Hsinchu City
Email

Additional Information

Pavilion:Future Tech Evolutionary Materials & Chemical FG03
Exhibiting Entity:National Science and Technology Council
Application Category:Materials, Chemical Engineering and Nanotech
More
Patents: 11821697