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一种具有改进热辐射性能用于集水的两亲性表面。

An Amphiphilic Surface with Improved Thermal Radiation for Water Harvesting.

作者信息

Wang Han, Li Shengtao, Zhang Ye, Wu Weihui, Ali Khaled Abdeen Mousa, Li Changyou

机构信息

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

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

出版信息

Molecules. 2024 Jun 5;29(11):2672. doi: 10.3390/molecules29112672.

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%.

摘要

水资源短缺给生活在干旱地区的人们带来了重大挑战。尽管许多仿生表面在促进蒸汽凝结方面很有效,但其集水效率仍不足。过热往往会加剧这种情况,这会降低微滴在表面的浓度和移动方面的性能。在本研究中,我们使用了一种斑点状两亲性表面来提高表面的集水效率,同时保持其热发射率。通过亲水性颗粒筛选和疏水槽改性,改善了两亲性表面上液滴的聚结和滑动特性。氮化硼(BN)纳米颗粒的加入进一步增强了表面从凝结中收集能量的能力。为了评估这些两亲性表面的集水性能,我们利用一个实时记录集水平台来识别表面上的微观重量变化。我们的研究结果表明,在疏水槽中加入玻璃颗粒,并结合1.0 wt.%的BN纳米颗粒,可使两亲性表面的集水效率提高20%以上。

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