Artificial water channels are synthetic molecules that aim to mimic the structural and functional features of biological water channels (aquaporins). Here we report on a cluster-forming organic nanoarchitecture, peptide-appended hybrid[4]arene (PAH[4]), as a new class of artificial water channels. Fluorescence experiments and simulations demonstrated that PAH[4]s can form, through lateral diffusion, clusters in lipid membranes that provide synergistic membrane-spanning paths for a rapid and selective water permeation through water-wire networks. Quantitative transport studies revealed that PAH[4]s can transport >109 water molecules per second per molecule, which is comparable to aquaporin water channels. The performance of these channels ex...
Water plays a crucial role in all living cells and organisms, and efficient regulation of transmembr...
The inherent permeability-selectivity (permselectivity) tradeoff is one of the issues thin-film comp...
The objective of this work is the design new types of highly efficient self-assembled artificial wat...
Bioinspired artificial water channels aim to combine the high permeability and selectivity of biolog...
Peptide-appended Pillar[5]arene (PAP) is an artificial water channel that can be incorporated into l...
Artificial water channels are a practical alternative to biological water channels for achieving exc...
International audienceArtificial water channels (AWCs) are known to selectively transport water, wit...
This study examined the feasibility and performance of a nanochannel-based biomimetic membrane (NBM)...
A detailed characterization of the physics of novel nanopore systems has the potential to revolution...
A molecular scale understanding of the fast and selective water transport in biological water channe...
In this work, we explored the practicability of a nanochannel-based biomimetic membrane (NBM) incorp...
Aquaporins (AQPs) are biological water channels known for fast water transport (~108-109 molecules/s...
Affordable clean water is both a global and a national security issue as lack of it can cause death,...
Synthetic polymer membranes, critical to diverse energy-efficient separations, are subject to permea...
Artificial water channels (AWCs) are synthetic mimics of biological water channel proteins, aquapori...
Water plays a crucial role in all living cells and organisms, and efficient regulation of transmembr...
The inherent permeability-selectivity (permselectivity) tradeoff is one of the issues thin-film comp...
The objective of this work is the design new types of highly efficient self-assembled artificial wat...
Bioinspired artificial water channels aim to combine the high permeability and selectivity of biolog...
Peptide-appended Pillar[5]arene (PAP) is an artificial water channel that can be incorporated into l...
Artificial water channels are a practical alternative to biological water channels for achieving exc...
International audienceArtificial water channels (AWCs) are known to selectively transport water, wit...
This study examined the feasibility and performance of a nanochannel-based biomimetic membrane (NBM)...
A detailed characterization of the physics of novel nanopore systems has the potential to revolution...
A molecular scale understanding of the fast and selective water transport in biological water channe...
In this work, we explored the practicability of a nanochannel-based biomimetic membrane (NBM) incorp...
Aquaporins (AQPs) are biological water channels known for fast water transport (~108-109 molecules/s...
Affordable clean water is both a global and a national security issue as lack of it can cause death,...
Synthetic polymer membranes, critical to diverse energy-efficient separations, are subject to permea...
Artificial water channels (AWCs) are synthetic mimics of biological water channel proteins, aquapori...
Water plays a crucial role in all living cells and organisms, and efficient regulation of transmembr...
The inherent permeability-selectivity (permselectivity) tradeoff is one of the issues thin-film comp...
The objective of this work is the design new types of highly efficient self-assembled artificial wat...