Optical and thermal filtering nanoporous materials for sub-ambient radiative cooling

被引:26
|
作者
Kim, Hannah [1 ]
Lenert, Andrej [1 ]
机构
[1] Univ Michigan, Dept Chem Engn, Ann Arbor, MI 48109 USA
关键词
thermal radiation; radiative cooling; nanoporous materials; TRANSPARENT CONVECTION SHIELDS; PIGMENTED POLYETHYLENE; SILICA AEROGELS; THIN-FILM; OPTIMIZATION; PERFORMANCE; INSULATION; RECEIVERS; COVER; FOILS;
D O I
10.1088/2040-8986/aacaa1
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Emitting heat to Space is a passive, dry, and solid-state cooling approach with potential applications in thermal management of buildings, solar cells, and vehicles. Emitting in the 8-13 mu m atmospheric window while preventing heat from reaching the cold emitter is important to the performance. Here, we investigate the design of infrared-transparent thermally-insulating materials for radiative cooling at deep sub-ambient temperatures. Unlike surface-based designs that rely on selective emission, selective radiative heat transfer with Space is achieved via selective transmission through an insulating cover. We model the radiative and thermal transport characteristics of several nanoporous materials that are transparent in the 8-13 mu m range. We also study the effects of physical morphology and material composition on the scattering and absorption properties of the insulating cover, and its radiative cooling performance. By tailoring the nanostructure and material composition, one can define regions for short-wavelength scattering and long-wavelength absorption, and in turn, block solar and atmospheric heat. The combination of low thermal conductivity and selectively high transparency in the atmospheric window enable high-performance radiative cooling down to 35 K below ambient temperature.
引用
收藏
页数:7
相关论文
共 50 条
  • [21] Full daytime sub-ambient radiative cooling film with high efficiency and low cost
    Zhang, Shuai
    Jing, Weilong
    Chen, Zhang
    Zhang, Canying
    Wu, Daxiong
    Gao, Yanfeng
    Zhu, Haitao
    RENEWABLE ENERGY, 2022, 194 : 850 - 857
  • [22] Bulk material based selective infrared emitter for sub-ambient daytime radiative cooling
    Yang, Yue
    Long, Linshuang
    Meng, Sheng
    Denisuk, Nicholas
    Chen, Guangzhu
    Wang, Liping
    Zhu, Yonggang
    SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2020, 211
  • [23] Field investigation and performance evaluation of sub-ambient radiative cooling in low latitude seaside
    Liu, Junwei
    Zhou, Zhihua
    Zhang, Debao
    Jiao, Shifei
    Zhang, Ying
    Luo, Longfei
    Zhang, Zhuofen
    Gao, Feng
    RENEWABLE ENERGY, 2020, 155 (155) : 90 - 99
  • [24] Daytime Sub-Ambient Radiative Cooling with Vivid Structural Colors Mediated by Coupled Nanocavities
    Jin, Shenghao
    Xiao, Ming
    Zhang, Wenbin
    Wang, Boxiang
    Zhao, Changying
    ACS APPLIED MATERIALS & INTERFACES, 2022, 14 (49) : 54676 - 54687
  • [25] Both sub-ambient and above-ambient conditions: a comprehensive approach for the efficient use of radiative cooling
    Tang, Huajie
    Guo, Chenyue
    Fan, Fan
    Pan, Haodan
    Xu, Qihao
    Zhao, Dongliang
    ENERGY & ENVIRONMENTAL SCIENCE, 2024, 17 (13) : 4498 - 4507
  • [26] Aqueous double-layer paint of low thickness for sub-ambient radiative cooling
    Dopphoopha, Benjamin
    Li, Keqiao
    Lin, Chongjia
    Huang, Baoling
    NANOPHOTONICS, 2024, 13 (05) : 659 - 668
  • [27] Cryogenic/sub-ambient cooling of electronics: Revisited
    Suman, S
    Fedorov, A
    Joshi, Y
    ITHERM 2004, VOL 1, 2004, : 224 - 231
  • [28] Multi-interface porous coating for efficient sub-ambient daytime radiative cooling
    Jin, Cheng
    Zhang, Wenshuo
    Ni, Jiahao
    Li, Lanxin
    Hao, Yong
    Pei, Gang
    Zhao, Bin
    SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2025, 286
  • [29] Large-scale industry-compatible sub-ambient radiative cooling pulp
    Zhu, Wenkai
    Zhang, Yun
    Mohammad, Noor
    Xu, Wenhui
    Tunc, Sefik
    Shan, Xiwei
    Zhou, Chenli
    Semple, Katherine
    Dai, Chunping
    Li, Tian
    CELL REPORTS PHYSICAL SCIENCE, 2022, 3 (11):
  • [30] 3D printable optical structures for sub-ambient sky cooling
    Gentle, A. R.
    Nuhoglu, A.
    Arnold, M. D.
    Smith, G. B.
    THERMAL RADIATION MANAGEMENT FOR ENERGY APPLICATIONS, 2017, 10369