An Amphiphilic Surface with Improved Thermal Radiation for Water Harvesting

Author:

Wang Han12ORCID,Li Shengtao1ORCID,Zhang Ye1,Wu Weihui2,Ali Khaled Abdeen Mousa13ORCID,Li Changyou1

Affiliation:

1. College of Engineering, South China Agricultural University, Guangzhou 510642, China

2. School of Intelligent Engineering, Shaoguan University, Shaoguan 512158, China

3. College of Agricultural Engineering, Al-Azhar University, Cairo 11751, Egypt

Abstract

Water scarcity poses a significant challenge for people living in arid areas. Despite the effectiveness of many bioinspired surfaces in promoting vapor condensation, their water-harvesting efficiency is insufficient. This is often exacerbated by overheating, which decreases the performance in terms of the micro-droplet concentration and movement on surfaces. In this study, we used a spotted amphiphilic surface to enhance the surfaces’ water-harvesting efficiency while maintaining their heat emissivity. Through hydrophilic particle screening and hydrophobic groove modifying, the coalescence and sliding characteristics of droplets on the amphiphilic surfaces were improved. The incorporation of boron nitride (BN) nanoparticles further enhanced the surfaces’ ability to harvest energy from condensation. To evaluate the water-harvesting performance of these amphiphilic surfaces, we utilized a real-time recording water-harvesting platform to identify microscopic weight changes on the surfaces. Our findings indicated that the inclusion of glass particles in hydrophobic grooves, combined with 1.0 wt.% BN nanoparticles, enhanced the water-harvesting efficiency of the amphiphilic surfaces by more than 20%.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

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