Biological light-driven ion pumps move ions against a concentration gradient to create a membrane potential, thus converting sunlight energy directly into an osmotic potential. Here, we describe an artificial light-driven ion pump system in which a carbon nitride nanotube membrane can drive ions thermodynamically uphill against an up to 5000-fold concentration gradient by illumination. The separation of electrons and holes in the membrane under illumination results in a transmembrane potential which is thought to be the foundation for the pumping phenomenon. When used for harvesting solar energy, a sustained open circuit voltage of 550 mV and a current density of 2.4 mu A/cm(2) can reliably be generated, which can be further scaled up throu...
OAK B188 The goal of this project is to mimic the energy transduction processes by which photosynthe...
Ions transport through confined space with characteristic dimensions comparable to the Debye length ...
The organic electronic ion pump (OEIP) is an emerging bioelectronic technology for on-demand and loc...
Biological light-driven ion pumps move ions against a concentration gradient to create a membrane po...
Light-driven ion (proton) transport is a crucial process both for photosynthesis of green plants and...
To resolve the fluctuation and storage issues renewable energy is facing, photo-rechargeable electri...
Here we discuss the photon-driven transport of protons and electrons over hundreds of microns throug...
Inspired by natural photosynthesis, light has become an emerging ionic behavior regulator and ion-pu...
Biological ion channels and ion pumps with sub-nanometer sizes modulate ion transport in response to...
Layered graphene oxide membranes (GOM) with densely packed sub-nanometer-wide lamellar channels show...
A popular method to harvest solar power is to convert light to heat, then to the kinetic energy of w...
The continuous energy-harvesting in moisture environment is attractive for the development of clean ...
This Thesis provides the seminal work towards the development of new technologies for ionic power ge...
An artificial photosynthetic system that directly produces fuels from sunlight could provide an appr...
We are developing a photoelectrochemical system that uses sunlight to drive the splitting of water i...
OAK B188 The goal of this project is to mimic the energy transduction processes by which photosynthe...
Ions transport through confined space with characteristic dimensions comparable to the Debye length ...
The organic electronic ion pump (OEIP) is an emerging bioelectronic technology for on-demand and loc...
Biological light-driven ion pumps move ions against a concentration gradient to create a membrane po...
Light-driven ion (proton) transport is a crucial process both for photosynthesis of green plants and...
To resolve the fluctuation and storage issues renewable energy is facing, photo-rechargeable electri...
Here we discuss the photon-driven transport of protons and electrons over hundreds of microns throug...
Inspired by natural photosynthesis, light has become an emerging ionic behavior regulator and ion-pu...
Biological ion channels and ion pumps with sub-nanometer sizes modulate ion transport in response to...
Layered graphene oxide membranes (GOM) with densely packed sub-nanometer-wide lamellar channels show...
A popular method to harvest solar power is to convert light to heat, then to the kinetic energy of w...
The continuous energy-harvesting in moisture environment is attractive for the development of clean ...
This Thesis provides the seminal work towards the development of new technologies for ionic power ge...
An artificial photosynthetic system that directly produces fuels from sunlight could provide an appr...
We are developing a photoelectrochemical system that uses sunlight to drive the splitting of water i...
OAK B188 The goal of this project is to mimic the energy transduction processes by which photosynthe...
Ions transport through confined space with characteristic dimensions comparable to the Debye length ...
The organic electronic ion pump (OEIP) is an emerging bioelectronic technology for on-demand and loc...