Nanofluidic osmotic power, which converts a difference in salinity between brine and fresh water into electricity with nanoscale channels, has received more and more attention in recent years. It is long believed that to gain high-performance osmotic power, highly charged channel materials should be exploited so as to enhance the ion selectivity. In this paper, we report counterintuitive surface-charge-density-dependent osmotic power in a single funnel-shaped nanochannel (FSN), violating the previous viewpoint. For the highly charged nanochannel, the performance of osmotic power decreases with a further increase in its surface charge density. With increasing pH (surface charge density), the FSN enables a local maximum power density as high ...
As an important nanofluidic device, an artificial ion nanochannel could selectively transport ions i...
The increase of energy demand added to the concern for environmental pollution linked to energy gene...
Asymmetrical properties of ion transport have been found in single conical nanopores and partly char...
Nanofluidic osmotic power, which converts a difference in salinity between brine and fresh water int...
International audienceOsmosis describes the flow of water across semipermeable membranes powered by ...
Blue energy conversion, where the chemical energy stored in salinity gradients can be converted into...
High-performance osmotic energy conversion (OEC) requires both high ionic selectivity and permeabili...
This theoretical study investigates the nonlinear ionic current-voltage characteristics of nano-chan...
International audienceNew models of fluid transport are expected to emerge from the confinement of l...
[[abstract]]Considering recent widespread applications in nanofluidics, we analyze the ionic current...
Recent experiments showed that by fabricating nanofluidic channels with hydrophobic materials, the m...
Experimental evidence revealed that the performance of nanopore-based biosensing devices can be impr...
[[abstract]]Experimental evidence revealed that the performance of nanopore-based biosensing devices...
Due to its potential applications in biotechnology, ion current rectification (ICR) arising from the...
High-performance osmotic energy conversion (OEC) with perm-selective porous membrane requires both h...
As an important nanofluidic device, an artificial ion nanochannel could selectively transport ions i...
The increase of energy demand added to the concern for environmental pollution linked to energy gene...
Asymmetrical properties of ion transport have been found in single conical nanopores and partly char...
Nanofluidic osmotic power, which converts a difference in salinity between brine and fresh water int...
International audienceOsmosis describes the flow of water across semipermeable membranes powered by ...
Blue energy conversion, where the chemical energy stored in salinity gradients can be converted into...
High-performance osmotic energy conversion (OEC) requires both high ionic selectivity and permeabili...
This theoretical study investigates the nonlinear ionic current-voltage characteristics of nano-chan...
International audienceNew models of fluid transport are expected to emerge from the confinement of l...
[[abstract]]Considering recent widespread applications in nanofluidics, we analyze the ionic current...
Recent experiments showed that by fabricating nanofluidic channels with hydrophobic materials, the m...
Experimental evidence revealed that the performance of nanopore-based biosensing devices can be impr...
[[abstract]]Experimental evidence revealed that the performance of nanopore-based biosensing devices...
Due to its potential applications in biotechnology, ion current rectification (ICR) arising from the...
High-performance osmotic energy conversion (OEC) with perm-selective porous membrane requires both h...
As an important nanofluidic device, an artificial ion nanochannel could selectively transport ions i...
The increase of energy demand added to the concern for environmental pollution linked to energy gene...
Asymmetrical properties of ion transport have been found in single conical nanopores and partly char...