Biological ion channels and ion pumps with sub-nanometer sizes modulate ion transport in response to external stimuli. Realizing such functions with sub-nanometer solid-state nanopores has been an important topic with wide practical applications. Herein, we demonstrate a biomimetic photoresponsive ion channel and photodriven ion pump using a porphyrin-based metal–organic framework membrane with pore sizes comparable to hydrated ions. We show that the molecular-size pores enable precise and robust optoelectronic ion transport modulation in a broad range of concentrations, unparalleled with conventional solid-state nanopores. Upon decoration with platinum nanoparticles to form a Schottky barrier photodiode, photovoltage across the membrane is...
Biological ion channels with delicate ion transport functions exist widely in living organisms. Bioi...
In recent years, engineered biological pores responsive to external stimuli have been fruitfully use...
Biological cells are filled with a variety of pores and channels that transport ions and molecules a...
Biological ion channels and ion pumps with sub-nanometer sizes modulate ion transport in response to...
In nature, ion channels facilitate the selective transport of ions, water and small organic molecule...
We describe the fabrication of asymmetric nanopores sensitive to ultraviolet (UV) light, and give a...
Inspired by natural photosynthesis, light has become an emerging ionic behavior regulator and ion-pu...
The ability of living systems to respond to stimuli and process information has encouraged scientist...
We describe the fabrication of asymmetric nanopores sensitive to ultraviolet (UV) light, and give a ...
To mimic the selectivity and properties of biological channels and pumps, adaptive systems can be de...
4-oxo-4-(pyren-4-ylmethoxy) butanoic acid is used as a photolabile protecting group to show the opti...
Photoresponsive nanochannel systems whose ionic transportation properties can be controlled by the p...
Biological ion channels have been an inspirational source in the development of new devices in a var...
Biological light-driven ion pumps move ions against a concentration gradient to create a membrane po...
Water wetting behavior in nanoconfined environments plays an important role in mass transport and si...
Biological ion channels with delicate ion transport functions exist widely in living organisms. Bioi...
In recent years, engineered biological pores responsive to external stimuli have been fruitfully use...
Biological cells are filled with a variety of pores and channels that transport ions and molecules a...
Biological ion channels and ion pumps with sub-nanometer sizes modulate ion transport in response to...
In nature, ion channels facilitate the selective transport of ions, water and small organic molecule...
We describe the fabrication of asymmetric nanopores sensitive to ultraviolet (UV) light, and give a...
Inspired by natural photosynthesis, light has become an emerging ionic behavior regulator and ion-pu...
The ability of living systems to respond to stimuli and process information has encouraged scientist...
We describe the fabrication of asymmetric nanopores sensitive to ultraviolet (UV) light, and give a ...
To mimic the selectivity and properties of biological channels and pumps, adaptive systems can be de...
4-oxo-4-(pyren-4-ylmethoxy) butanoic acid is used as a photolabile protecting group to show the opti...
Photoresponsive nanochannel systems whose ionic transportation properties can be controlled by the p...
Biological ion channels have been an inspirational source in the development of new devices in a var...
Biological light-driven ion pumps move ions against a concentration gradient to create a membrane po...
Water wetting behavior in nanoconfined environments plays an important role in mass transport and si...
Biological ion channels with delicate ion transport functions exist widely in living organisms. Bioi...
In recent years, engineered biological pores responsive to external stimuli have been fruitfully use...
Biological cells are filled with a variety of pores and channels that transport ions and molecules a...