A biomimetic nanofluidic diode based on surface-modified polymeric carbon nitride nanotubes
2019 ◽
Vol 10
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pp. 1316-1323
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Low Cost
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A controllable ion transport including ion selectivity and ion rectification across nanochannels or porous membranes is of great importance because of potential applications ranging from biosensing to energy conversion. Here, a nanofluidic ion diode was realized by modifying carbon nitride nanotubes with different molecules yielding an asymmetric surface charge that allows for ion rectification. With the advantages of low-cost, thermal and mechanical robustness, and simple fabrication process, carbon nitride nanotubes with ion rectification have the potential to be used in salinity-gradient energy conversion and ion sensor systems.
2018 ◽
Vol 57
(32)
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pp. 10123-10126
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Keyword(s):
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2019 ◽
Vol 418
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pp. 33-41
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