D Wei, C Wang, J Zhang, H Zhao, Y Asakura… - Advanced …, 2023 - Wiley Online Library
Solar‐powered vapor evaporation (SVG), based on the liquid‐gas phase conversion concept using solar energy, has been given close attention as a promising technology to …
Improving interfacial solar evaporation performance is crucial for the practical application of this technology in solar‐driven seawater desalination. Lowering evaporation enthalpy is one …
Y Li, Y Shi, H Wang, T Liu, X Zheng, S Gao… - Carbon Energy, 2023 - Wiley Online Library
The shortage of fresh water in the world has brought upon a serious crisis to human health and economic development. Solar‐driven interfacial photothermal conversion water …
H Zou, X Meng, X Zhao, J Qiu - Advanced Materials, 2023 - Wiley Online Library
Solar‐driven water evaporation technology holds great potential for mitigating the global water scarcity due to its high energy conversion efficiency. Lowering the vaporization …
Using minimal photothermal material to achieve maximum evaporation rate is extremely important for practical applications of interfacial solar evaporation technology. In this work …
Alternative water resources (seawater, brackish water, atmospheric water, sewage, etc.) can be converted into clean freshwater via high-efficiency, energy-saving, and cost-effective …
Hypersaline brines are of growing environmental concern. While high-salinity desalination and zero liquid discharge (ZLD) are increasingly attractive treatment options, the high salt …
The pressing concern of escalating water scarcity has spurred the creation of advanced technologies, such as interfacial solar steam generation (ISSG), to tackle the challenge …
X Wu, Y Wang, P Wu, J Zhao, Y Lu… - Advanced Functional …, 2021 - Wiley Online Library
Interfacial solar steam generation offers a promising and cost‐effective way for saline water desalination. However, salt accumulation and deposition on photothermal materials during …