It is believed that ion current rectification (ICR), a property that assures preferential ionic transport in one direction, can only be observed in nanopores when the pore size is comparable to the thickness of the electric double layer (EDL). Rectifying nanopores became the basis of biological sensors and components of ionic circuits. Here we report that appreciable ICR can also occur in highly charged conical, polymer mesopores whose tip diameters are as large as 400 nm, thus over 100-fold larger than the EDL thickness. A rigorous model taking into account the surface equilibrium reaction of functional carboxyl groups on the pore wall and electroosmotic flow is employed to explain that unexpected phenomenon. Results show that the pore rec...
[[abstract]]The ionic current rectification (ICR) is studied theoretically by considering a pH-regul...
This work reports a comprehensive theoretical study of the transport-rectification properties of cyl...
Asymmetrically shaped nanopores have been shown to rectify the ionic current flowing through pores i...
Nanopores exhibit a set of interesting transport properties that stem from interactions of the passi...
Rectifying nanopores feature ion currents that are higher for voltages of one polarity compared to t...
Rectifying nanopores feature ion currents that are higher for voltages of one polarity compared to t...
Nanopores that exhibit ionic current rectification (ICR) behave like diodes, such that they transpor...
Rectifying nanopores feature ion currents that are higher for voltages of one polarity compared to t...
ABSTRACT: Rectifying nanopores feature ion currents that are higher for voltages of one polarity com...
We show both theoretically and experimentally that the ion-selectivity of a conic nanopore, as defin...
Single nanopores have attracted much scientific interest because of their versatile applications. Th...
Nanopores attracted a great deal of scientific interest as templates for biological sensors as well ...
Ionic transport in charged conical nanopores is known to give rise to ion current rectification. The...
Due to its potential applications in biotechnology, ion current rectification (ICR) arising from the...
The ion current rectification behavior of bioinspired nanopores is modeled by adopting a bullet-shap...
[[abstract]]The ionic current rectification (ICR) is studied theoretically by considering a pH-regul...
This work reports a comprehensive theoretical study of the transport-rectification properties of cyl...
Asymmetrically shaped nanopores have been shown to rectify the ionic current flowing through pores i...
Nanopores exhibit a set of interesting transport properties that stem from interactions of the passi...
Rectifying nanopores feature ion currents that are higher for voltages of one polarity compared to t...
Rectifying nanopores feature ion currents that are higher for voltages of one polarity compared to t...
Nanopores that exhibit ionic current rectification (ICR) behave like diodes, such that they transpor...
Rectifying nanopores feature ion currents that are higher for voltages of one polarity compared to t...
ABSTRACT: Rectifying nanopores feature ion currents that are higher for voltages of one polarity com...
We show both theoretically and experimentally that the ion-selectivity of a conic nanopore, as defin...
Single nanopores have attracted much scientific interest because of their versatile applications. Th...
Nanopores attracted a great deal of scientific interest as templates for biological sensors as well ...
Ionic transport in charged conical nanopores is known to give rise to ion current rectification. The...
Due to its potential applications in biotechnology, ion current rectification (ICR) arising from the...
The ion current rectification behavior of bioinspired nanopores is modeled by adopting a bullet-shap...
[[abstract]]The ionic current rectification (ICR) is studied theoretically by considering a pH-regul...
This work reports a comprehensive theoretical study of the transport-rectification properties of cyl...
Asymmetrically shaped nanopores have been shown to rectify the ionic current flowing through pores i...