AbstractIon perm-selectivity is one of the major proprieties of nanofluidic devices. Within the influence of an electric field through an ion-selective nanochannel, a phenomenon called ICP “Ion Concentration Polarization” appears and creates near the micro-nanojunction an ion depletion/concentration zone at the anodic/cathodic side, respectively. Recent works have shown that the anodic depletion can be used as a powerfull preconcentration tool for detection of molecules (DNA, proteins…). Here, we present an original micro-nanofluidic device realized by standard silicon technology which exhibits circular micro-nanojuction. The ICP phenomenon was demonstrated on fluorescent molecules (fluorescein). The radial configuration of the nanochannels...
Nanochannel devices have been fabricated using standard micromachining techniques such as optical li...
Nanochannel devices have been explored over the years with wide applications in bio/chemical analysi...
Includes bibliographical references.1. Introduction -- 2. Basic principles and theory -- 3. Nanochan...
AbstractIon perm-selectivity is one of the major proprieties of nanofluidic devices. Within the infl...
We describe a novel and simple mechanism for inducing ion concentration polarization (ICP) using a s...
Detection of low concentrated analytes in complex samples is one of the most interesting challenges ...
We describe a novel and simple mechanism for inducing ion concentration polarization (ICP) using a s...
The electrokinetic molecular concentration (EMC) effect at the micro-nanofluidic interface, which en...
In this work, we investigated three single straight microchannel designs for the microfluidic biomol...
Microfluidic devices utilize ion concentration polarization (ICP) phenomena for a variety of applica...
The researches conducted during this thesis consist in a first step for the development of experimen...
We changed the nonrectifying biological porin OmpF into a nanofluidic diode. To that end, we enginee...
DoctorIon concentration polarization (ICP) is an electrochemical phenomenon that takes place in memb...
Microfluidic devices utilize ion concentration polarization (ICP) phenomena for a variety of applica...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2007.Includ...
Nanochannel devices have been fabricated using standard micromachining techniques such as optical li...
Nanochannel devices have been explored over the years with wide applications in bio/chemical analysi...
Includes bibliographical references.1. Introduction -- 2. Basic principles and theory -- 3. Nanochan...
AbstractIon perm-selectivity is one of the major proprieties of nanofluidic devices. Within the infl...
We describe a novel and simple mechanism for inducing ion concentration polarization (ICP) using a s...
Detection of low concentrated analytes in complex samples is one of the most interesting challenges ...
We describe a novel and simple mechanism for inducing ion concentration polarization (ICP) using a s...
The electrokinetic molecular concentration (EMC) effect at the micro-nanofluidic interface, which en...
In this work, we investigated three single straight microchannel designs for the microfluidic biomol...
Microfluidic devices utilize ion concentration polarization (ICP) phenomena for a variety of applica...
The researches conducted during this thesis consist in a first step for the development of experimen...
We changed the nonrectifying biological porin OmpF into a nanofluidic diode. To that end, we enginee...
DoctorIon concentration polarization (ICP) is an electrochemical phenomenon that takes place in memb...
Microfluidic devices utilize ion concentration polarization (ICP) phenomena for a variety of applica...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2007.Includ...
Nanochannel devices have been fabricated using standard micromachining techniques such as optical li...
Nanochannel devices have been explored over the years with wide applications in bio/chemical analysi...
Includes bibliographical references.1. Introduction -- 2. Basic principles and theory -- 3. Nanochan...