High-performance, superhydrophobic, durable photonic structure coating for efficient passive daytime radiative cooling

被引:1
|
作者
Xu, Xu-Yan [1 ]
Zhang, Hui [1 ]
Kang, Xiao-Jie [2 ]
Zhang, Yong-Zhi [2 ]
He, Cheng-Yu [2 ]
Gao, Xiang-Hu [2 ]
机构
[1] Lanzhou Jiaotong Univ, Key Lab Opt Elect Technol & Intelligent Control, Minist Educ, Lanzhou 730070, Peoples R China
[2] Chinese Acad Sci, Lanzhou Inst Chem Phys, Res Ctr Resource Chem & Energy Mat, State Key Lab Solid Lubricat, Lanzhou 730000, Peoples R China
关键词
Passive daytime radiative cooling; Photonic structure coating; Superhydrophobic; Self-cleaning; Outdoor durability; HEXAGONAL BORON-NITRIDE; SURFACE; PAINTS;
D O I
10.1016/j.mtphys.2024.101556
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Passive daytime radiative cooling (PDRC) is an innovative and energy-free cooling technology that automatically cools the surface of an object by reflecting sunlight and emitting heat into outer space without the need for external energy inputs. However, PDRC materials often face issues such as surface contamination and poor longterm outdoor durability. Herein, a photonic structure coating with high PDRC performance, superhydrophobic property, and high outdoor durability was designed and prepared using a phase separation strategy. The photonic structure coating achieves a solar reflectance similar to 97.6 % and an average atmospheric window (AW) emissivity of similar to 93 %. Under direct sunlight (800 W/m(2)), the coating exhibits good PDRC performance, with an average temperature drop of similar to 13 degrees C and a maximum temperature drop of up to similar to 20 degrees C. The rough and porous surface of the coating can adsorb air, reducing the solid-liquid adhesion and endowing the coating with superhydrophobic properties. The incorporation of a small amount of fluoroalkyl silanes into the coating provides water resistance, resulting in a water contact angle (WCA) of similar to 155.1 degrees and sliding angle (SA) of similar to 2.3 degrees, meeting the need for self-cleaning. Furthermore, the coating exhibits superior durability, including resistance to acid and alkali, UV aging, abrasion, and scratching. All these merits render this photonic structure coating great potential for real-world applications.
引用
收藏
页数:10
相关论文
共 50 条
  • [31] Free-standing, colored, polymer film with composite opal photonic crystal structure for efficient passive daytime radiative cooling
    Zhao, Jintao
    Nan, Feng
    Zhou, Lei
    Huang, Haoyun
    Zhou, Guanghong
    Zhu, Yu-fu
    Ou, Qingdong
    SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2023, 251
  • [32] Biomimetic Photonic Multiform Composite for High-Performance Radiative Cooling
    Liu, Xianghui
    Xiao, Chengyu
    Wang, Pan
    Yan, Max
    Wang, Huifen
    Xie, Peiwen
    Liu, Gang
    Zhou, Han
    Zhang, Di
    Fan, Tongxiang
    ADVANCED OPTICAL MATERIALS, 2021, 9 (22)
  • [33] A Scalable Microstructure Photonic Coating Fabricated by Roll-to-Roll "Defects" for Daytime Subambient Passive Radiative Cooling
    Liu, Sipan
    Sui, Chenxi
    Harbinson, Myers
    Pudlo, Michael
    Perera, Himendra
    Zhang, Zhenzhen
    Liu, Ruguan
    Ku, Zahyun
    Islam, Md Didarul
    Liu, Yuxuan
    Wu, Ronghui
    Zhu, Yong
    Genzer, Jan
    Khan, Saad A.
    Hsu, Po-Chun
    Ryu, Jong Eun
    NANO LETTERS, 2023, 23 (17) : 7767 - 7774
  • [34] Superhydrophobic SiO2-Glass Bubbles Composite Coating for Stable and Highly Efficient Daytime Radiative Cooling
    Sun, Yuqiu
    He, Hua
    Huang, Xiulin
    Guo, Zhiguang
    ACS APPLIED MATERIALS & INTERFACES, 2023, 15 (03) : 4799 - 4813
  • [35] Scalable, Controlled Bimodal Pore-Structured Polymer Coating for Efficient Passive Daytime Radiative Cooling
    Wang, Qianqian
    Luo, Jiawei
    Lv, Ze
    Wu, Tong
    Zhang, Linping
    Zhong, Yi
    Xu, Hong
    Mao, Zhiping
    ACS APPLIED MATERIALS & INTERFACES, 2024, 16 (35) : 46761 - 46770
  • [36] Environmental effect on the performance of passive daytime photonic radiative cooling and building energy-saving potential
    Bijarniya, Jay Prakash
    Sarkar, Jahar
    Maiti, Pralay
    JOURNAL OF CLEANER PRODUCTION, 2020, 274
  • [37] Colorful Superhydrophobic Composite Coating for Efficient Passive Radiation Cooling
    Liu, Peng
    Sun, Yuqiu
    Huang, Xiulin
    Guo, Zhiguang
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2023, 62 (51) : 21995 - 22004
  • [38] CELLULAR INORGANIC CERAMIC FOR HIGHLY EFFICIENT DAYTIME PASSIVE RADIATIVE COOLING
    Lin, Kaixin
    Zhu, Yihao
    Ho, Tsz Chung
    Tso, Chi Yan
    PROCEEDINGS OF ASME 2023 17TH INTERNATIONAL CONFERENCE ON ENERGY SUSTAINABILITY, ES2023, 2023,
  • [39] A flexible and superhydrophobic PTFE/PU-SiO2 complex coating with synergistic effect for enhancement of passive daytime radiative cooling
    Su, Yanhua
    Shi, Jianyang
    Wang, Shuang
    Wang, Haibo
    Du, Zongliang
    Qiu, Jinghong
    Cheng, Xu
    PROGRESS IN ORGANIC COATINGS, 2025, 201
  • [40] Humidity-tolerant porous polymer coating for passive daytime radiative cooling
    Hong, Dongpyo
    Lee, Yong Joon
    Jeon, Ok Sung
    Lee, In-Sung
    Lee, Se Hun
    Won, Jae Yeon
    Jeon, Young Pyo
    La, Yunju
    Kim, Seonmyeong
    Park, Gun-Sik
    Yoo, Young Joon
    Park, Sang Yoon
    NATURE COMMUNICATIONS, 2024, 15 (01)