Biological ion channels with delicate ion transport functions exist widely in living organisms. Bioinspired solid‐state channels have emerged as promising platforms to mimic the working mechanism of natural channels. These channels help in understanding the mechanism of ion transport in biosystems and pave the way for applications in several interesting areas. Metal‐organic frameworks (MOFs), constructed by connecting metal ions and organic ligands, exhibit high porosity and unique pore structures. They also possess tunable pore sizes and are versatile in their compositions. And there are rich molecule/ion‐specific functional groups in the frameworks, which can intelligently modulate ion transport. Thus, MOFs are promising candidates that m...
Biological fluoride ion channels are sub-1-nanometer protein pores with ultrahigh F− conductivity an...
DoctorThis thesis describes the synthesis and characterization of artificial ion channels using meta...
Metal–organic frameworks (MOFs) have been reported as promising solid-state electrolytes owing to th...
Porous membranes with ultrafast ion permeation and high ion selectivity are highly desirable for eff...
Nature’s design of biological ion channels that demonstrates efficient gating and selectivity brings...
Advanced porous framework membranes with excellent selectivity and high permeability of small molecu...
Metal-organic frameworks (MOFs) have emerged as porous hybrid materials composed of metal ions and o...
Metal-organic frameworks are an emerging and fascinating category of porous solids that can be self-...
Rapid population and economic growth cause severe anthropogenic emissions, which lead to many water ...
Gas membrane-based separation is considered one of the most effective technologies to address energy...
Metal–organic frameworks (MOFs) are a class of coordination polymers, consisting of metal ions or cl...
New membrane materials with excellent water permeability and high ion rejection are needed. Metal-or...
Owing to the rich porosity and uniform pore size, metal-organic frameworks (MOFs) offer substantial ...
International audienceThe development of bioinspired nano/subnano-sized (<2 nm) ion channels is stil...
The formation of biofunctionalized metal–organic frameworks (MOFs) by growing them on a variety of m...
Biological fluoride ion channels are sub-1-nanometer protein pores with ultrahigh F− conductivity an...
DoctorThis thesis describes the synthesis and characterization of artificial ion channels using meta...
Metal–organic frameworks (MOFs) have been reported as promising solid-state electrolytes owing to th...
Porous membranes with ultrafast ion permeation and high ion selectivity are highly desirable for eff...
Nature’s design of biological ion channels that demonstrates efficient gating and selectivity brings...
Advanced porous framework membranes with excellent selectivity and high permeability of small molecu...
Metal-organic frameworks (MOFs) have emerged as porous hybrid materials composed of metal ions and o...
Metal-organic frameworks are an emerging and fascinating category of porous solids that can be self-...
Rapid population and economic growth cause severe anthropogenic emissions, which lead to many water ...
Gas membrane-based separation is considered one of the most effective technologies to address energy...
Metal–organic frameworks (MOFs) are a class of coordination polymers, consisting of metal ions or cl...
New membrane materials with excellent water permeability and high ion rejection are needed. Metal-or...
Owing to the rich porosity and uniform pore size, metal-organic frameworks (MOFs) offer substantial ...
International audienceThe development of bioinspired nano/subnano-sized (<2 nm) ion channels is stil...
The formation of biofunctionalized metal–organic frameworks (MOFs) by growing them on a variety of m...
Biological fluoride ion channels are sub-1-nanometer protein pores with ultrahigh F− conductivity an...
DoctorThis thesis describes the synthesis and characterization of artificial ion channels using meta...
Metal–organic frameworks (MOFs) have been reported as promising solid-state electrolytes owing to th...