材料科学
纳米技术
工艺工程
蒸发
太阳能
光热治疗
聚光镜(光学)
过程(计算)
可再生能源
可扩展性
能量转换
玻璃
高效能源利用
涂层
表面工程
图层(电子)
热的
热能
光伏系统
持续性
机械工程
生化工程
能源消耗
系统工程
潜热
工程物理
电子设备和系统的热管理
能量转换效率
低能
工艺设计
计算机科学
环境科学
作者
Muhammad Sultan Irshad,Ghazala Maqsood,Naila Arshad,Bushra Shakoor,Iftikhar Ahmed,Muhammad Atif Ali,Muhammad Sohail Asghar,Wan Li,Wenlu Li,Naveed Mushtaq,Uzma Ghazanfar,Saif Ur Rehman,Muḥammad Ṣābir,Muhammad Saqib,Tao Mei,Zhou Tianxiang,Tariq Shamim,Jian Zhang,Hao Wang,Van‐Duong Dao
出处
期刊:Small
[Wiley]
日期:2026-01-08
卷期号:22 (10): e06124-e06124
标识
DOI:10.1002/smll.202506124
摘要
Solar-driven steam generation (SSG) is an efficient process for converting solar energy into thermal energy, demonstrating significant potential for industrial use. Recent progress in interfacial engineering, particularly through innovations in photothermal layer design and condenser optimization, has enabled remarkable solar-thermal conversion efficiencies at the air/liquid interface. This review systematically examines interfacial engineering strategies for high-performance evaporators, emphasizing the critical role of hydrophilic/hydrophobic coatings in achieving sustainable water production. Furthermore, it evaluates condensing structures, comprehensively classifying condensers and their influence on freshwater yield. By analyzing key physical factors, including phase-change dynamics, vapor-liquid equilibrium, and enthalpy reduction strategies for photothermal materials (PTMs), as well as the harnessing of ambient energy for enhanced evaporation, this review offers a framework to elucidate the mechanisms of hydrophilic/hydrophobic coatings and identify potential breakthroughs under optimized conditions. Finally, we discuss the prospective applications of SSG systems with advanced evaporators and condensers, alongside the prevailing challenges in scalability and practical implementation.
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