DOI: 10.3390/en19163738 ISSN: 1996-1073

Advances in Humidity-Driven Energy Harvesting: A Review of Mechanisms, Materials, and Scalability Challenges

Yanhui Wang, Yuting Wang, Jiaxin Peng, Lingxiao Gao, Yicheng Song, Kejie Dai, Qibo Deng

This review systematically summarizes recent advances in moisture-electric generation technology from four perspectives: functional-material modification, device-structure design, multi-source energy-harvesting strategies, and practical applications. It discusses the classification and modification of moisture-responsive functional materials; analyzes how device architectures regulate ion transport, reviews the mechanisms of coupling moisture energy with solar, thermal, and mechanical energy; and summarizes representative applications of moisture-electric generators (MEGs) in power supply, self-powered sensing, and wearable electronics. The review further compares the advantages and limitations of different material and structural strategies and evaluates challenges related to output performance, environmental adaptability, long-term stability, power management, and scalable fabrication. Finally, future research directions are discussed to support the practical development of MEGs.

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