Biological fluoride ion channels are sub-1-nanometer protein pores with ultrahigh F− conductivity and selectivity over other halogen ions. Developing synthetic F− channels with biological-level selectivity is highly desirable for ion separations such as water defluoridation, but it remains a great challenge. Here we report synthetic F− channels fabricated from zirconium-based metal-organic frameworks (MOFs), UiO-66-X (X = H, NH2, and N+(CH3)3). These MOFs are comprised of nanometer-sized cavities connected by sub-1-nanometer-sized windows and have specific F− binding sites along the channels, sharing some features of biological F− channels. UiO-66-X channels consistently show ultrahigh F− conductivity up to ~10 S m−1, and ultrahigh F−/Cl− s...
We demonstrate experimentally and theoretically a nanofluidic fluoride sensing device based on a sin...
A hydrolytically stable metal–organic framework (MOF) material, named KAUST-7′, was derived from a s...
Metal–organic frameworks (MOFs) have been reported as promising solid-state electrolytes owing to th...
Biological ion channels with delicate ion transport functions exist widely in living organisms. Bioi...
Construction of nanofluidic devices with an ultimate ion selectivity analogue to biological ion chan...
Porous membranes with ultrafast ion permeation and high ion selectivity are highly desirable for eff...
For many microbes, fluoride ion (F-) is toxic in high concentrations. To resist Ftoxicity, microbes ...
Fluoride, a small and monovalent anion with high charge density, is highly mobile in certain metal f...
Nature’s design of biological ion channels that demonstrates efficient gating and selectivity brings...
1D nanochannels modified with responsive molecules are fabricated to replicate gating functionalitie...
International audienceThe development of bioinspired nano/subnano-sized (<2 nm) ion channels is stil...
A novel 21-residue peptide incorporating six fluorinated amino acids was prepared. It was designed t...
International audienceProton conductive materials are of significant importance and highly desired f...
Fluoride has been overlooked as a target in the development of synthetic anion transporters despite ...
Here, we report on a novel class of fluorofoldamer-based artificial water channels (AWCs) that combi...
We demonstrate experimentally and theoretically a nanofluidic fluoride sensing device based on a sin...
A hydrolytically stable metal–organic framework (MOF) material, named KAUST-7′, was derived from a s...
Metal–organic frameworks (MOFs) have been reported as promising solid-state electrolytes owing to th...
Biological ion channels with delicate ion transport functions exist widely in living organisms. Bioi...
Construction of nanofluidic devices with an ultimate ion selectivity analogue to biological ion chan...
Porous membranes with ultrafast ion permeation and high ion selectivity are highly desirable for eff...
For many microbes, fluoride ion (F-) is toxic in high concentrations. To resist Ftoxicity, microbes ...
Fluoride, a small and monovalent anion with high charge density, is highly mobile in certain metal f...
Nature’s design of biological ion channels that demonstrates efficient gating and selectivity brings...
1D nanochannels modified with responsive molecules are fabricated to replicate gating functionalitie...
International audienceThe development of bioinspired nano/subnano-sized (<2 nm) ion channels is stil...
A novel 21-residue peptide incorporating six fluorinated amino acids was prepared. It was designed t...
International audienceProton conductive materials are of significant importance and highly desired f...
Fluoride has been overlooked as a target in the development of synthetic anion transporters despite ...
Here, we report on a novel class of fluorofoldamer-based artificial water channels (AWCs) that combi...
We demonstrate experimentally and theoretically a nanofluidic fluoride sensing device based on a sin...
A hydrolytically stable metal–organic framework (MOF) material, named KAUST-7′, was derived from a s...
Metal–organic frameworks (MOFs) have been reported as promising solid-state electrolytes owing to th...