Reproducing the structure and function of biological membrane channels, synthetic nanopores have been developed for applications in membrane filtration technologies and biomolecular sensing. Stable stand-alone synthetic nanopores have been created from a variety of materials, including peptides, nucleic acids, synthetic polymers, and solid-state membranes. In contrast to biological nanopores, however, furnishing such synthetic nanopores with an atomically defined shape, including deliberate placement of each and every chemical group, remains a major challenge. Here, we introduce a chemosynthetic macromoleculeextended pillararene macrocycle (EPM)as a chemically defined transmembrane nanopore that exhibits selective transmembrane transport. O...
Development of sophisticated tools capable of manipulating molecules at their own length scale enabl...
Biological ion channels have been an inspirational source in the development of new devices in a var...
ABSTRACT: DNA nanotechnology excels at rationally designing bottom-up structures that can functional...
Reproducing the structure and function of biological membrane channels, synthetic nanopores have bee...
Nanoscopic pores in biological systems – cells, for example – are responsible for regulating the tra...
In nature, ion channels facilitate the selective transport of ions, water and small organic molecule...
The generation of different types of peptide-based nanopores is elucidated in this work. First, biol...
The use of nanopores of well controlled geometry for sensing molecules in solution is reviewed. Focu...
The use of nanopores of well controlled geometry for sensing molecules in solution is reviewed. Focu...
We describe the use of asymmetric nanopores decorated with crown ethers for constructing robust sign...
The ion-coupled processes that occur in the plasma membrane regulate the cell machineries in all the...
A detailed characterization of the physics of novel nanopore systems has the potential to revolution...
Biological nanopores are an essential element to the success of the lipid bilayer that makes life po...
A long-standing aim in molecular self-assembly is the development of synthetic nanopores capable of ...
We present an experimental demonstration of a synthetic nanoporous membrane suitable for charge-sele...
Development of sophisticated tools capable of manipulating molecules at their own length scale enabl...
Biological ion channels have been an inspirational source in the development of new devices in a var...
ABSTRACT: DNA nanotechnology excels at rationally designing bottom-up structures that can functional...
Reproducing the structure and function of biological membrane channels, synthetic nanopores have bee...
Nanoscopic pores in biological systems – cells, for example – are responsible for regulating the tra...
In nature, ion channels facilitate the selective transport of ions, water and small organic molecule...
The generation of different types of peptide-based nanopores is elucidated in this work. First, biol...
The use of nanopores of well controlled geometry for sensing molecules in solution is reviewed. Focu...
The use of nanopores of well controlled geometry for sensing molecules in solution is reviewed. Focu...
We describe the use of asymmetric nanopores decorated with crown ethers for constructing robust sign...
The ion-coupled processes that occur in the plasma membrane regulate the cell machineries in all the...
A detailed characterization of the physics of novel nanopore systems has the potential to revolution...
Biological nanopores are an essential element to the success of the lipid bilayer that makes life po...
A long-standing aim in molecular self-assembly is the development of synthetic nanopores capable of ...
We present an experimental demonstration of a synthetic nanoporous membrane suitable for charge-sele...
Development of sophisticated tools capable of manipulating molecules at their own length scale enabl...
Biological ion channels have been an inspirational source in the development of new devices in a var...
ABSTRACT: DNA nanotechnology excels at rationally designing bottom-up structures that can functional...