Previous work has demonstrated the simultaneous concentration and separation of proteins via a stable ion concentration gradient established within a nanochannel (Inglis Angew. Chem., Int. Ed. 2001, 50, 7546-7550). To gain a better understanding of how this novel technique works, we here examine experimentally and numerically how the underlying electric potential controlled ion concentration gradients can be formed and controlled. Four nanochannel geometries are considered. Measured fluorescence profiles, a direct indicator of ion concentrations within the Tris-fluorescein buffer solution, closely match depth-averaged fluorescence profiles calculated from the simulations. The simulations include multiple reacting species within the fluid bu...
Microfluidic devices utilize ion concentration polarization (ICP) phenomena for a variety of applica...
The ability to rapidly generate concentration gradients of diffusible molecules has important applic...
In this work, we investigated three single straight microchannel designs for the microfluidic biomol...
Previous work has demonstrated the simultaneous concentration and separation of proteins via a stabl...
The simultaneous concentration gradient focusing and separation of proteins in a silica nanofluidic ...
A nanofluidic device capable of simultaneous concentration and separation of proteins is described. ...
Includes bibliographical references.1. Introduction -- 2. Basic principles and theory -- 3. Nanochan...
In this work we describe the theory and 2D simulation of ion separation and focusing in a new concep...
We demonstrate matrix-free pH gradient electrofocusing of proteins within an 85 nm deep nanochannel....
© 2015 Dr. Wei-Lun HsuThe manipulation of biological macromolecules in a new breed of nanofluidic de...
We present a robust microfluidic platform for the stable generation of multiple chemical gradients s...
We reveal a physical mechanism that enables the preconcentration, sorting, and characterization of c...
Isoelectric focusing of proteins in a silica nanofluidic channel filled with citric acid and disodiu...
Isoelectric focusing of proteins in a silica nanofluidic channel filled with citric acid and disodiu...
Sample preconcentration is a critical operation required for the determination of trace amounts of a...
Microfluidic devices utilize ion concentration polarization (ICP) phenomena for a variety of applica...
The ability to rapidly generate concentration gradients of diffusible molecules has important applic...
In this work, we investigated three single straight microchannel designs for the microfluidic biomol...
Previous work has demonstrated the simultaneous concentration and separation of proteins via a stabl...
The simultaneous concentration gradient focusing and separation of proteins in a silica nanofluidic ...
A nanofluidic device capable of simultaneous concentration and separation of proteins is described. ...
Includes bibliographical references.1. Introduction -- 2. Basic principles and theory -- 3. Nanochan...
In this work we describe the theory and 2D simulation of ion separation and focusing in a new concep...
We demonstrate matrix-free pH gradient electrofocusing of proteins within an 85 nm deep nanochannel....
© 2015 Dr. Wei-Lun HsuThe manipulation of biological macromolecules in a new breed of nanofluidic de...
We present a robust microfluidic platform for the stable generation of multiple chemical gradients s...
We reveal a physical mechanism that enables the preconcentration, sorting, and characterization of c...
Isoelectric focusing of proteins in a silica nanofluidic channel filled with citric acid and disodiu...
Isoelectric focusing of proteins in a silica nanofluidic channel filled with citric acid and disodiu...
Sample preconcentration is a critical operation required for the determination of trace amounts of a...
Microfluidic devices utilize ion concentration polarization (ICP) phenomena for a variety of applica...
The ability to rapidly generate concentration gradients of diffusible molecules has important applic...
In this work, we investigated three single straight microchannel designs for the microfluidic biomol...