A Multifunctional Hydrogel with Multimodal Self-Powered Sensing Capability and Stable Direct Current Output for Outdoor Plant Monitoring Systems
Highlights A simple and scalable fabricated hydrogel with multiple functionalities to realize self-sustainable outdoor monitoring solely by it for large-scale applications in precision agriculture. Stable direct-current output without requirement on stochastic or temporal environmental energies, ach...
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          | Main Authors: | , , , | 
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| Format: | Article | 
| Language: | English | 
| Published: | SpringerOpen
    
        2024-11-01 | 
| Series: | Nano-Micro Letters | 
| Subjects: | |
| Online Access: | https://doi.org/10.1007/s40820-024-01587-y | 
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| Summary: | Highlights A simple and scalable fabricated hydrogel with multiple functionalities to realize self-sustainable outdoor monitoring solely by it for large-scale applications in precision agriculture. Stable direct-current output without requirement on stochastic or temporal environmental energies, achieving an energy density of 1.36 × 107 J m–3 with continuous operation of 56.25 days in normal outdoor environment. Self-powered noninvasive leaf relative water content monitoring and environmental sensing to evaluate plant health status with high durability and self-recoverability in severe environments. | 
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| ISSN: | 2311-6706 2150-5551 | 
 
       