There is a growing quest for tailorable nanochannels or nanopores having dimensions comparable to the size of biological molecules and mimicking the function of biological ion channels. This interest is based on the use of nanochannels as extremely sensitive single molecule biosensors. The biosensing capabilities of these nanochannels depend sensitively on the surface characteristics of their inner walls to achieve the desired functionality of the biomimetic system. Nanoscale control over the surface properties of the nanochannel plays a crucial role in the biosensing performance due to the chemical groups incorporated on the inner channel walls that act as binding sites for different analytes and interact with molecules passing through the...
Inspired from the funtioning and responsiveness of biological ion channels, researchers attempt to d...
In the recent years, track-etched nanopores became the major impulse in the development of nanofluid...
The integration of constriction structures such as nanopores and nanochannels into fluidic devices d...
There is a growing quest for tailorable nanochannels or nanopores having dimensions comparable to th...
Nanochannels fabricated in ion-tracked polymer membranes have a great range of applications in biote...
In this work, we describe the direct covalent attachment of protein recognition elements (biotin) wi...
Nature has inspired the fabrication of intelligent devices to meet the needs of the advanced communi...
We demonstrate the supramolecular bioconjugation of concanavalin A (Con A) protein with glycoenzyme ...
We demonstrate the supramolecular bioconjugation of concanavalin A (Con A) protein with glycoenzyme ...
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...
Artificial nanochannels, inheriting smart gating functions of biological ion channels, promote the d...
International audienceSolid-state nanopores provide a powerful tool to electrically analyze nanopart...
Inspired from the funtioning and responsiveness of biological ion channels, researchers attempt to d...
In the recent years, track-etched nanopores became the major impulse in the development of nanofluid...
The integration of constriction structures such as nanopores and nanochannels into fluidic devices d...
There is a growing quest for tailorable nanochannels or nanopores having dimensions comparable to th...
Nanochannels fabricated in ion-tracked polymer membranes have a great range of applications in biote...
In this work, we describe the direct covalent attachment of protein recognition elements (biotin) wi...
Nature has inspired the fabrication of intelligent devices to meet the needs of the advanced communi...
We demonstrate the supramolecular bioconjugation of concanavalin A (Con A) protein with glycoenzyme ...
We demonstrate the supramolecular bioconjugation of concanavalin A (Con A) protein with glycoenzyme ...
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...
Artificial nanochannels, inheriting smart gating functions of biological ion channels, promote the d...
International audienceSolid-state nanopores provide a powerful tool to electrically analyze nanopart...
Inspired from the funtioning and responsiveness of biological ion channels, researchers attempt to d...
In the recent years, track-etched nanopores became the major impulse in the development of nanofluid...
The integration of constriction structures such as nanopores and nanochannels into fluidic devices d...