| [1] | Odenweller A. and Ueckerdt F. (2025). The green hydrogen ambition and implement-ation gap. Nat. Energy 10:110−123. DOI:10.1038/s41560-024-01684-7 |
| [2] | Wang C.R., Stansberry J.M., Mukundan R., et al., (2025). Proton Exchange Membrane (PEM) Water Electrolysis: Cell-Level Considerations for Gigawatt-Scale Deployment. Chem. Rev. 125:1257-1302. DOI:10.1021/acs. chemrev.3c00904 |
| [3] | Yao Y.J., Zhang P.X., Sun F., et al. (2024). More resilient polyester membranes for high-performance reverse osmosis desalination. Science 384:333-338. DOI:10.1126/science.adk0632 |
| [4] | Guan P.P., Jiang M.J., Li W., et al. (2025). Strategies for Lowering Hydrogen Permeation in Membranes for Proton Exchange Membrane Water Electrolyzers and Fuel Cells. Adv. Mater. 38:e08400. DOI:10.1002/adma.202508400 |
| [5] | Xie H.P., Zhao Z.Y., Wu Y.F., et al., (2022). A membrane-based seawater electrolyser for hydrogen generation. Nature:673-678. DOI:10.1038 /s41586-022-05379-5 |
| Gao M., Ma M. and Xing Z. (2026). Green hydrogen from the ocean: Prospects and pitfalls. The Innovation Energy 3:100144. https://doi.org/10.59717/j.xinn-energy.2026.100144 |
To request copyright permission to republish or share portions of our works, please visit Copyright Clearance Center's (CCC) Marketplace website at marketplace.copyright.com.
(A) Fabrication and utilization of MGH; (B) Integrated dual circulation of energy and seawater within the RO/EDI/HP-PEME System.1-2