薄脆饼
材料科学
纳米技术
硅
蒸发
电
发电
光电子学
工艺工程
电气工程
工程类
功率(物理)
量子力学
热力学
物理
作者
Zheheng Song,Can Ge,Yuhang Song,Zhewei Chen,Beibei Shao,Xianrong Yuan,Jiangyu Chen,Duo Xu,Tao Song,Jian Fang,Yusheng Wang,Baoquan Sun
出处
期刊:Small
[Wiley]
日期:2022-11-24
卷期号:19 (4)
被引量:25
标识
DOI:10.1002/smll.202205265
摘要
Electricity generation triggered by the ubiquitous water evaporation process provides an intriguing way to harvest energy from water. Meanwhile, natural water evaporation is also a fundamental way to obtain fresh water for human beings. Here, a wafer-scale nanostructured silicon-based device that takes advantage of its well-aligned configuration that simultaneously realizes solar steam generation (SSG) for freshwater collection and hydrovoltaic effect generation for electricity output is developed. An ingenious porous, black carbon nanotube fabric (CNF) electrode endows the device with sustainable water self-pumping capability, excellent durable conductivity, and intense solar spectrum harvesting. A combined device based on the CNF electrode integrated with nanostructured silicon nanowire arrays (SiNWs) provided an aligned numerous surface-to-volume water evaporation interface that enables a recorded continuous short-circuit current 8.65 mA and a water evaporation rate of 1.31 kg m-2 h-1 under one sun illumination. Such wafer-scale SiNWs-based SSG and hydrovoltaic integration devices would unchain the bottleneck of the weak and discontinuous electrical output of hydrovoltaic devices, which inspires other sorts of semiconductor-based hydrovoltaic device designs to target superior performance.
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