Highly Flexible and Efficient Solar Steam Generation Device

材料科学 工艺工程 工程物理 纳米技术 工程类
作者
Chaoji Chen,Yiju Li,Jianwei Song,Zhi Yang,Yudi Kuang,Emily Hitz,Chao Jia,Amy Gong,Feng Jiang,J. Y. Zhu,Bao Yang,Jia Xie,Liangbing Hu
出处
期刊:Advanced Materials [Wiley]
卷期号:29 (30) 被引量:859
标识
DOI:10.1002/adma.201701756
摘要

Solar steam generation with subsequent steam recondensation has been regarded as one of the most promising techniques to utilize the abundant solar energy and sea water or other unpurified water through water purification, desalination, and distillation. Although tremendous efforts have been dedicated to developing high‐efficiency solar steam generation devices, challenges remain in terms of the relatively low efficiency, complicated fabrications, high cost, and inability to scale up. Here, inspired by the water transpiration behavior of trees, the use of carbon nanotube (CNT)‐modified flexible wood membrane (F‐Wood/CNTs) is demonstrated as a flexible, portable, recyclable, and efficient solar steam generation device for low‐cost and scalable solar steam generation applications. Benefitting from the unique structural merits of the F‐Wood/CNTs membrane—a black CNT‐coated hair‐like surface with excellent light absorbability, wood matrix with low thermal conductivity, hierarchical micro‐ and nanochannels for water pumping and escaping, solar steam generation device based on the F‐Wood/CNTs membrane demonstrates a high efficiency of 81% at 10 kW cm −2 , representing one of the highest values ever‐reported. The nature‐inspired design concept in this study is straightforward and easily scalable, representing one of the most promising solutions for renewable and portable solar energy generation and other related phase‐change applications.
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