Nanofluidic blue energy harvesting attracts great interest due to its high power density and easy-to-implement nature. Proof-of-concept studies on single-pore platforms show that the power density approaches up to 10 3 to 10 6 W m –2 . However, to translate the estimated high power density into real high power becomes a challenge in membrane-scale applications. The actual power density from existing membrane materials is merely several watts per square meter. Understanding the origin and thereby bridging the giant gap between the single-pore demonstration and the membrane-scale application is therefore highly demanded. In this work, an intuitive resistance paradigm is adopted to show that this giant gap originates from the different ion tra...
The first part of this thesis is an introduction to the different energy conversion and desalination...
Authors of the article systematically investigated how the membrane charge populations affect permse...
[[abstract]]To assess the possibility of energy harvesting through reverse electrodialysis (RED), we...
The increase of energy demand added to the concern for environmental pollution linked to energy gene...
The increase of energy demand added to the concern for environmental pollution linked to energy gene...
In recent years, the utilization of the selective ion transport through porous membranes for osmotic...
Inspired by biological systems that have the inherent skill to generate considerable bioelectricity ...
High-performance osmotic energy conversion (OEC) requires both high ionic selectivity and permeabili...
Blue energy conversion, where the chemical energy stored in salinity gradients can be converted into...
11 figures, 11 pagesLiquid transport through nanopore is central into many applications, from water ...
Two-dimensional (2D) nanofluidic membranes have shown great promise in harvesting osmotic energy fro...
High-performance osmotic energy conversion (OEC) with perm-selective porous membrane requires both h...
Expérience réalisée au GANILInternational audienceThe salinity gradient between brine and fresh wate...
Expérience réalisée au GANILInternational audienceThe salinity gradient between brine and fresh wate...
As an important nanofluidic device, an artificial ion nanochannel could selectively transport ions i...
The first part of this thesis is an introduction to the different energy conversion and desalination...
Authors of the article systematically investigated how the membrane charge populations affect permse...
[[abstract]]To assess the possibility of energy harvesting through reverse electrodialysis (RED), we...
The increase of energy demand added to the concern for environmental pollution linked to energy gene...
The increase of energy demand added to the concern for environmental pollution linked to energy gene...
In recent years, the utilization of the selective ion transport through porous membranes for osmotic...
Inspired by biological systems that have the inherent skill to generate considerable bioelectricity ...
High-performance osmotic energy conversion (OEC) requires both high ionic selectivity and permeabili...
Blue energy conversion, where the chemical energy stored in salinity gradients can be converted into...
11 figures, 11 pagesLiquid transport through nanopore is central into many applications, from water ...
Two-dimensional (2D) nanofluidic membranes have shown great promise in harvesting osmotic energy fro...
High-performance osmotic energy conversion (OEC) with perm-selective porous membrane requires both h...
Expérience réalisée au GANILInternational audienceThe salinity gradient between brine and fresh wate...
Expérience réalisée au GANILInternational audienceThe salinity gradient between brine and fresh wate...
As an important nanofluidic device, an artificial ion nanochannel could selectively transport ions i...
The first part of this thesis is an introduction to the different energy conversion and desalination...
Authors of the article systematically investigated how the membrane charge populations affect permse...
[[abstract]]To assess the possibility of energy harvesting through reverse electrodialysis (RED), we...