材料科学
电
工艺工程
功率密度
储能
发电
多孔介质
电力
蒸发
功率(物理)
纳米技术
多孔性
工程物理
碳纤维
电气工程
复合材料
工程类
物理
复合数
热力学
量子力学
作者
Tianpeng Ding,Kang Liu,Jia Li,Guobin Xue,Qian Chen,Liang Huang,Bin Hu,Jun Zhou
标识
DOI:10.1002/adfm.201700551
摘要
Converting environmental “waste energies” into electricity via a natural process is an ideal strategy for environmental energy harvesting and supplying power for distributed energy‐consuming devices. This paper reports that evaporation‐driven water flow within an all‐printed porous carbon film can reliably generate sustainable voltage up to 1 V with a power density of ≈8.1 µW cm −3 under ambient conditions. The output performance of the device can be easily scaled up and used to power low‐power consumption electronic devices or for energy storage. Furthermore, the device is successfully used without electric storage as a direct power source for electrodeposition of silver microstructures. Because of the ubiquity of water evaporation in nature and the low cost of materials involved, the study presents a novel avenue to harvest ambient energy and has potential applications in low‐cost, green, self‐powered devices and systems.
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