International Journal of Biological Macromolecules, Journal Year: 2024, Volume and Issue: 283, P. 137907 - 137907
Published: Nov. 20, 2024
Language: Английский
International Journal of Biological Macromolecules, Journal Year: 2024, Volume and Issue: 283, P. 137907 - 137907
Published: Nov. 20, 2024
Language: Английский
Advanced Functional Materials, Journal Year: 2025, Volume and Issue: unknown
Published: Feb. 3, 2025
Abstract Water isotopologue sieving has been flagged as one of the biggest challenges in modern separation technologies owing to their extremely similar physicochemical properties. As a benchmark candidate, current membrane suffers from inferior water imposed by failure size exclusion conventional separation. Herein, facile approach is presented elaborate MXene/Cellulose nanofiber (CNF) membranes featuring confined thermal‐recognized hydrogen bonding nanochannels, enabling highly‐selective, energy‐efficient and durable deuterium under low‐grade heat. The key such lies meticulous utilization CNF‐enabled rich bonds within which attract more via bond (─OD/─OH) meanwhile thermally recognizing with stable ─OD interaction create significant diffusion kinetic differences over It demonstrated that MXene/CNF deliver an extraordinary factor high 5.2 yet demanding energy consumption low 2.9 GJ kg −1 , outperforming most state‐of‐the‐art technologies. Moreover, exhibits performance long‐term operations can be further integrated into multi‐stage device for augmenting concentration water, making it step closer practical applications.
Language: Английский
Citations
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Language: Английский
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Language: Английский
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Language: Английский
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Language: Английский
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Language: Английский
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Language: Английский
Citations
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