| Literature DB >> 34190529 |
Qi Zhang1, Chengmei Jiang1, Xunjia Li1, Shufen Dai1, Yibin Ying1, Jianfeng Ping1.
Abstract
Establishing a sustainable energy supply is necessary for intelligent greenhouse environmental management. Compared with traditional energy, green and eco-friendly energy is more conducive to protecting the agricultural production environment. In this study, a fluorinated superhydrophobic greenhouse film is proposed as a negative triboelectric layer material for the construction of a triboelectric nanogenerator that harvests raindrop energy (RDE-TENG). Moreover, an upgraded configuration is adopted, where the bulk effect between the lower/upper electrode and film replaces the interfacial effect of the liquid-solid interface, thereby promoting charge transfer. The results show that the RDE-TENG can serve as a sustainable energy source for greenhouse temperature and humidity sensors that assists in realizing intelligent control of the environment and guides agricultural production processes. This device exhibits high-voltage and a stable output; thus, it has the potential to replace traditional energy sources, which helps toward realizing a self-powered intelligent greenhouse planting mode.Keywords: greenhouse film; raindrop energy; self-powered greenhouse; superhydrophobic; triboelectric nanogenerator
Year: 2021 PMID: 34190529 DOI: 10.1021/acsnano.1c04258
Source DB: PubMed Journal: ACS Nano ISSN: 1936-0851 Impact factor: 15.881