Smart farming with outdoor monitoring systems is critical to address food shortages and sustainability challenges. These systems facilitate informed decisions that enhance efficiency in broader environmental management. Existing outdoor systems equipped with energy harvesters and self-powered sensors often struggle with fluctuating energy sources, low durability under harsh conditions, non-transparent or non-biocompatible materials, and complex structures. Herein, a multifunctional hydrogel is developed, which can fulfill all the above requirements and build self-sustainable outdoor monitoring systems solely by it. It can serve as a stable energy harvester that continuously generates direct current output with an average power density of 1.9 W m(-3) for nearly 60 days of operation in normal environments (24 °C, 60% RH), with an energy density of around 1.36âÃâ10(7) J m(-3). It also shows good self-recoverability in severe environments (45 °C, 30% RH) in nearly 40 days of continuous operation. Moreover, this hydrogel enables noninvasive and self-powered monitoring of leaf relative water content, providing critical data on evaluating plant health, previously obtainable only through invasive or high-power consumption methods. Its potential extends to acting as other self-powered environmental sensors. This multifunctional hydrogel enables self-sustainable outdoor systems with scalable and low-cost production, paving the way for future agriculture.
A Multifunctional Hydrogel with Multimodal Self-Powered Sensing Capability and Stable Direct Current Output for Outdoor Plant Monitoring Systems.
一种具有多模式自供电传感能力和稳定直流输出的多功能水凝胶,适用于户外植物监测系统
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作者:Guo Xinge, Wang Luwei, Jin Zhenyang, Lee Chengkuo
| 期刊: | Nano-Micro Letters | 影响因子: | 36.300 |
| 时间: | 2024 | 起止号: | 2024 Nov 27; 17(1):76 |
| doi: | 10.1007/s40820-024-01587-y | ||
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