Ion transport performance in nanochannels manipulated by external surface charge
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Publisher
Science China Press., Co. Ltd.
Link
https://engine.scichina.com/doi/pdf/90A2D20303874AA38A935011CCB556B2
Reference30 articles.
1. Emmerich T, Vasu K S, Niguès A. Enhanced nanofluidic transport in activated carbon nanoconduits. Nat Mater, 2022, 21: 696-702.
2. Sun Y, Zhou K, Xiao H. Immiscible liquid-mediated ultrafast ion transport through nanoconfined channels. Nano Energy, 2023, 105:
3. Srimuk P, Su X, Yoon J. Charge-transfer materials for electrochemical water desalination, ion separation and the recovery of elements. Nat Rev Mater, 2020, 5: 517-538.
4. Zhou X, Wang Z, Epsztein R. Intrapore energy barriers govern ion transport and selectivity of desalination membranes. Sci Adv, 2020, 6:
5. Zhang D, Zhang X. Bioinspired solid‐state nanochannel sensors: From ionic current signals, current, and fluorescence dual signals to faraday current signals. Small, 2021, 17:
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