Page 103 - Read Online
P. 103
Page 40 of 47 Zhou et al. Soft Sci. 2026, 6, 10
6. Jiao, S.; Li, Y.; Li, J.; et al. Water-enabled electricity generation on film structures: from materials to applications. Renew. Sustain.
Energy. Rev. 2024, 199, 114461. DOI
7. Khare, V.; Nema, S.; Baredar, P. Solar–wind hybrid renewable energy system: a review. Renew. Sustain. Energy. Rev. 2016, 58, 23-33.
DOI
8. Simshauser, P. Competition vs. coordination: optimising wind, solar and batteries in renewable energy zones. Energy. Econ. 2025, 143,
108279. DOI
9. Rahman, A.; Farrok, O.; Haque, M. M. Environmental impact of renewable energy source based electrical power plants: solar, wind,
hydroelectric, biomass, geothermal, tidal, ocean, and osmotic. Renew. Sustain. Energy. Rev. 2022, 161, 112279. DOI
10. Hussain, A.; Arif, S. M.; Aslam, M. Emerging renewable and sustainable energy technologies: state of the art. Renew. Sustain. Energy.
Rev. 2017, 71, 12-28. DOI
11. Service, R. F. ‘Hydrovoltaics’ tap energy from ubiquitous moisture. Science 2024, 384, 16. DOI PubMed
12. Zan, G.; Li, S.; Zhao, K.; et al. Emerging bioinspired hydrovoltaic electricity generators. Energy. Environ. Sci. 2025, 18, 53-96. DOI
13. Lim, H.; Kim, M. S.; Cho, Y.; et al. Hydrovoltaic electricity generator with hygroscopic materials: a review and new perspective. Adv.
Mater. 2024, 36, e2301080. DOI PubMed
14. Wang, J.; Cao, X.; Cui, X.; et al. Recent advances of green electricity generation: potential in solar interfacial evaporation system. Adv.
Mater. 2024, 36, e2311151. DOI PubMed
15. Fang, S.; Chu, W.; Tan, J.; Guo, W. The mechanism for solar irradiation enhanced evaporation and electricity generation. Nano. Energy.
2022, 101, 107605. DOI
16. Zheng, C.; Chu, W.; Fang, S.; Tan, J.; Wang, X.; Guo, W. Materials for evaporation‐driven hydrovoltaic technology. Interdiscip. Mater.
2022, 1, 449-70. DOI
17. Tan, J.; Wang, X.; Chu, W.; et al. Harvesting energy from atmospheric water: grand challenges in continuous electricity generation. Adv.
Mater. 2024, 36, e2211165. DOI PubMed
18. Xu, J.; Wang, P.; Bai, Z.; et al. Sustainable moisture energy. Nat. Rev. Mater. 2024, 9, 722-37. DOI
19. Xu, T.; Ding, X.; Cheng, H.; Han, G.; Qu, L. Moisture-enabled electricity from hygroscopic materials: a new type of clean energy. Adv.
Mater. 2024, 36, e2209661. DOI PubMed
20. Cheng, T.; Shao, J.; Wang, Z. L. Triboelectric nanogenerators. Nat. Rev. Methods. Primers. 2023, 3, 230. DOI
21. Song, Y.; Wang, N.; Wang, Y.; Zhang, R.; Olin, H.; Yang, Y. Direct current triboelectric nanogenerators. Adv. Energy. Mater. 2020, 10,
2002756. DOI
22. Ayachi, S.; He, X.; Yoon, H. J. Solar thermoelectricity for power generation. Adv. Energy. Mater. 2023, 13, 2300937. DOI
23. Lin, J.; Zhang, Z.; Lin, X.; et al. All wood‐based water evaporation‐induced electricity generator. Adv. Funct. Mater. 2024, 34, 2314231.
DOI
24. Onggowarsito, C.; Mao, S.; Zhang, X. S.; Feng, A.; Xu, H.; Fu, Q. Updated perspective on solar steam generation application. Energy.
Environ. Sci. 2024, 17, 2088-99. DOI
25. Baburaj, A.; Naveen Kumar, S.; Aliyana, A. K.; Banakar, M.; Bairagi, S.; Stylios, G. Factors affecting the performance of flexible
triboelectric nanogenerators (F-TENGs) and their sensing capabilities: a comprehensive review. Nano. Energy. 2023, 118, 108983. DOI
26. Ye, Z.; Liu, T.; Du, G.; et al. Bioinspired superhydrophobic triboelectric materials for energy harvesting. Adv. Funct. Mater. 2025, 35,
2412545. DOI
27. Yu, Y.; Gao, Q.; Zhang, X.; et al. Contact-sliding-separation mode triboelectric nanogenerator. Energy. Environ. Sci. 2023, 16, 3932-41.
DOI
28. Shrestha, K.; Pradhan, G. B.; Asaduzzaman, M.; et al. A breathable, reliable, and flexible siloxene incorporated porous SEBS‐based
triboelectric nanogenerator for human–machine interactions. Adv. Energy. Mater. 2024, 14, 2302471. DOI
29. Wu, X.; Lu, Y.; Ren, X.; et al. Interfacial solar evaporation: from fundamental research to applications. Adv. Mater. 2024, 36, e2313090.
DOI PubMed
30. Liu, X.; Gao, H.; Sun, L.; Yao, J. Generic air-gen effect in nanoporous materials for sustainable energy harvesting from air humidity.
Adv. Mater. 2024, 36, e2300748. DOI PubMed
31. Chen, J.; Zhang, X.; Cheng, M.; et al. A self-sustained moist-electric generator with enhanced energy density and longevity through a
bilayer approach. Mater. Horiz. 2025, 12, 2309-18. DOI PubMed
32. Zang, S.; Chen, J.; Yamauchi, Y.; et al. Moisture power generation: from material selection to device structure optimization. ACS. Nano.
2024, 18, 19912-30. DOI PubMed
33. Yu, F.; Wang, L.; Yang, X.; et al. Moisture-electric generators working in subzero environments based on laser-engraved hygroscopic
hydrogel arrays. ACS. Nano. 2025, 19, 3807-17. DOI PubMed
34. Chen, Y.; Ye, C.; He, J.; Guo, R.; Qu, L.; Tang, S. Achieving persistent and ultra-high voltage output through an arid-adapted
plant-inspired high-performance moisture-electric generator. Energy. Environ. Sci. 2025, 18, 6063-75. DOI

