Access the full text.
Sign up today, get DeepDyve free for 14 days.
Linxiao Zhu, A. Raman, S. Fan (2015)
Radiative cooling of solar absorbers using a visibly transparent photonic crystal thermal blackbodyProceedings of the National Academy of Sciences, 112
Wei Li, S. Fan (2018)
Nanophotonic control of thermal radiation for energy applications [Invited].Optics express, 26 12
T. Kjellstrom, David Briggs, Chris Freyberg, B. Lemke, M. Otto, O. Hyatt (2016)
Heat, Human Performance, and Occupational Health: A Key Issue for the Assessment of Global Climate Change Impacts.Annual review of public health, 37
Po-Chun Hsu, Alex Song, P. Catrysse, Chong Liu, Yucan Peng, Jin Xie, S. Fan, Yi Cui (2016)
Radiative human body cooling by nanoporous polyethylene textileScience, 353
A. Hamza, T. Sokkar, M. Mabrouk, M. El-Morsy (2000)
Refractive index profile of polyethylene fiber using interactive multiple‐beam fizeau fringe analysisJournal of Applied Polymer Science, 77
J. Spector, D. Bonauto, L. Sheppard, Tania Busch-Isaksen, Miriam Calkins, Darrin Adams, Max Lieblich, R. Fenske (2016)
A Case-Crossover Study of Heat Exposure and Injury Risk in Outdoor Agricultural WorkersPLoS ONE, 11
A. Raman, M. Anoma, Linxiao Zhu, E. Rephaeli, S. Fan (2014)
Passive radiative cooling below ambient air temperature under direct sunlightNature, 515
M. Yazdi, M. Sheikhzadeh (2014)
Personal cooling garments: a reviewThe Journal of The Textile Institute, 105
J. Steketee (1973)
Spectral emissivity of skin and pericardium.Physics in medicine and biology, 18 5
Wei Li, Yu Shi, Kaifeng Chen, Linxiao Zhu, S. Fan (2017)
A Comprehensive Photonic Approach for Solar Cell CoolingACS Photonics, 4
E. Goldstein, A. Raman, S. Fan (2017)
Sub-ambient non-evaporative fluid cooling with the skyNature Energy, 2
Zhi-Yong Jia, Jingning Li, Hong-Wei Wu, Cheng Wang, Tian-Yong Chen, R. Peng, Mu Wang (2016)
Dipole coupling and dual Fano resonances in a silicon nanodimerJournal of Applied Physics, 119
Albert Chan, W. Yi (2016)
Heat stress and its impacts on occupational health and performanceIndoor and Built Environment, 25
Yao Zhai, Yaoguang Ma, S. David, Dongliang Zhao, Runnan Lou, G. Tan, Ronggui Yang, Xiaobo Yin (2017)
Scalable-manufactured randomized glass-polymer hybrid metamaterial for daytime radiative coolingScience, 355
Po-Chun Hsu, Xiaoge Liu, Chong Liu, Xing Xie, H. Lee, A. Welch, Tom Zhao, Yi Cui (2015)
Personal thermal management by metallic nanowire-coated textile.Nano letters, 15 1
Cong Wang, Zhi-Yong Jia, Kun Zhang, Yue Zhou, Renhao Fan, X. Xiong, R. Peng (2014)
Broadband optical scattering in coupled silicon nanocylindersJournal of Applied Physics, 115
V. Srikant, D. Clarke (1998)
On the optical band gap of zinc oxideJournal of Applied Physics, 83
Ankun Yang, Lili Cai, Rufan Zhang, Jiangyan Wang, Po-Chun Hsu, Hongxia Wang, Guangmin Zhou, Jinwei Xu, Yi Cui (2017)
Thermal Management in Nanofiber-Based Face Mask.Nano letters, 17 6
G. Luber, M. Mcgeehin (2008)
Climate change and extreme heat events.American journal of preventive medicine, 35 5
W. Haynes (1990)
CRC Handbook of Chemistry and Physics
J. Tong, Xiaopeng Huang, S. Boriskina, J. Loomis, Yanfei Xu, Gang Chen (2015)
Infrared-Transparent Visible-Opaque Fabrics for Wearable Personal Thermal ManagementarXiv: Optics
Lili Cai, Alex Song, Peilin Wu, Po-Chun Hsu, Yucan Peng, Jun Chen, Chong Liu, P. Catrysse, Yayuan Liu, Ankun Yang, Chenxing Zhou, Chenyu Zhou, S. Fan, Yi Cui (2017)
Warming up human body by nanoporous metallized polyethylene textileNature Communications, 8
Bryan Jones, B. O’Neill, L. McDaniel, S. McGinnis, L. Mearns, C. Tebaldi (2015)
Future population exposure to US heat extremesNature Climate Change, 5
W. Bond (1965)
Measurement of the Refractive Indices of Several CrystalsJournal of Applied Physics, 36
R. Kovats, S. Hajat (2008)
Heat stress and public health: a critical review.Annual review of public health, 29
P. Duffy, C. Tebaldi (2012)
Increasing prevalence of extreme summer temperatures in the U.S.Climatic Change, 111
Outdoor heat stress poses a serious public health threat and curtails industrial labor supply and productivity, thus adversely impacting the wellness and economy of the entire society. With climate change, there will be more intense and frequent heat waves that further present a grand challenge for sustainability. However, an efficient and economical method that can provide localized outdoor cooling of the human body without intensive energy input is lacking. Here, a novel spectrally selective nanocomposite textile for radiative outdoor cooling using zinc oxide nanoparticle–embedded polyethylene is demonstrated. By reflecting more than 90% solar irradiance and selectively transmitting out human body thermal radiation, this textile can enable simulated skin to avoid overheating by 5–13 °C compared to normal textile like cotton under peak daylight condition. Owing to its superior passive cooling capability and compatibility with large‐scale production, this radiative outdoor cooling textile is promising to widely benefit the sustainability of society in many aspects spanning from health to economy.
Advanced Materials – Wiley
Published: Jan 1, 2018
Keywords: ; ; ; ;
Read and print from thousands of top scholarly journals.
Already have an account? Log in
Bookmark this article. You can see your Bookmarks on your DeepDyve Library.
To save an article, log in first, or sign up for a DeepDyve account if you don’t already have one.
Copy and paste the desired citation format or use the link below to download a file formatted for EndNote
Access the full text.
Sign up today, get DeepDyve free for 14 days.
All DeepDyve websites use cookies to improve your online experience. They were placed on your computer when you launched this website. You can change your cookie settings through your browser.