REFERENCES

1. Wang, N.; Xin, W.; He, Y.; et al. Cascade-heterostructured nanofluidics for photo-enhanced upscaling osmotic energy generation. Adv. Mater. 2026, 38, e19133.

2. Gouaux, E.; Mackinnon, R. Principles of selective ion transport in channels and pumps. Science 2005, 310, 1461-5.

3. Guo, J.; Liu, T.; Xin, W.; et al. Biomimetic dual asymmetric MXene-based nanofluidics for advancing osmotic power generation. J. Am. Chem. Soc. 2025, 147, 36329-38.

4. Fu, L.; Cai, J.; Yan, Z.; et al. Tailoring the microenvironments of dual-confinement COF nanofluidics for high-throughput and selective ion transport. Adv. Funct. Mater. 2026, 36, e30378.

5. Ling, H.; Wang, Q.; Yan, Z.; et al. High-efficiency ion transport in ultrathin 3D covalent organic framework nanofluidics. Angew. Chem. Int. Ed. Engl. 2025, 64, e202423073.

6. Wen, H.; Wang, J.; Dai, Z.; et al. Ultrathin azine covalent organic framework membrane for highly-efficient nanofluidic osmotic energy generator. Small 2025, 21, e2410140.

7. Chen, M.; Yang, K.; Wang, J.; Sun, H.; Xia, X.; Wang, C. In situ growth of imine-bridged anion-selective COF/AAO membrane for ion current rectification and nanofluidic osmotic energy conversion. Adv. Funct. Mater. 2023, 33, 2302427.

8. Wang, X.; Wang, Z.; Xue, Z.; et al. A subnano-confinement in robust MoS2-based membranes for high-performance osmotic energy conversion. Energy. Environ. Sci. 2024, 17, 6225-33.

9. Lin, W.; Huang, T.; Bai, C.; et al. Novel ultrastable 2D MOF/MXene nanofluidic membrane with ultralow resistance for highly efficient osmotic power harvesting. Nano. Energy. 2024, 128, 109924.

10. Zhang, C.; Xiao, T.; He, J.; et al. Room-temperature synthesis of a COFs membrane via LBL self-assembly strategy for energy harvesting. Small 2023, 19, e2301512.

11. Man, Z.; Safaei, J.; Zhang, Z.; et al. Serosa-mimetic nanoarchitecture membranes for highly efficient osmotic energy generation. J. Am. Chem. Soc. 2021, 143, 16206-16.