材料科学
光电-热混合太阳能集热器
工艺工程
海水淡化
热能
发电
热的
工程物理
太阳能
环境科学
功率(物理)
气象学
电气工程
热力学
工程类
物理
生物
遗传学
膜
作者
Liangliang Zhu,Tianpeng Ding,Minmin Gao,Connor Kang Nuo Peh,Ghim Wei Ho
标识
DOI:10.1002/aenm.201900250
摘要
Abstract Solar‐driven interfacial vaporization by localizing solar‐thermal energy conversion to the air–water interface has attracted tremendous attention due to its high conversion efficiency for water purification, desalination, energy generation, etc. However, ineffective integration of hybrid solar thermal devices and poor material compliance undermine extensive solar energy exploitation and practical outdoor use. Herein, a 3D organic bucky sponge that has a combination of desired chemical and physical properties, i.e., broadband light absorbing, heat insulative, and shape‐conforming abilities that render efficient photothermic vaporization and energy generation with improved operational durability is reported. The highly compressible and readily reconfigurable solar absorber sponge not only places less constraints on footprint and shape defined fabrication process but more importantly remarkably improves the solar‐to‐vapor conversion efficiency. Notably, synergetic coupling of solar‐steam and solar‐electricity technologies is realized without trade‐offs, highlighting the practical consideration toward more impactful solar heat exploitation. Such solar distillation and low‐grade heat‐to‐electricity generation functions can provide potential opportunities for fresh water and electricity supply in off‐grid or remote areas.
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