The ever-expanding optics of single-molecules and nanoparticles

F Cichos, T Xia, H Yang, P Zijlstra - The Journal of Chemical Physics, 2024 - pubs.aip.org
When confronted with a chemical physics problem, the standard approach has long been to
first simplify and limit the problem to a hypothetical molecule or a nanoscale unit in a …

Dielectrophoretic corral trap device for single bioparticle immobilization

TJ Kwak, MRU Rahman, JC Woehl… - … Conference on Circuits …, 2019 - ieeexplore.ieee.org
We present a lab-on-a-chip dielectrophoretic single particle trapping system that is able to
immobilize single particles suspended in solution. Proof-of-concept experiments and …

Numerical study on the effect of dielectrophoretic single particle trap geometry

MRU Rahman, TJ Kwak, JC Woehl… - 11th UWM College of …, 2019 - researchgate.net
The electrokinetic movement of a neutral but polarizable particle when subjected to a non-
uniform electric field, leads the translational motion of the particles. The attraction or …

Optimization of the Microfluidic Dielectrophoresis Trap Configuration for Nanoparticle Manipulation

MRU Rahman - 2021 - search.proquest.com
Dielectrophoresis (DEP) is an electrokinetic phenomenon in which neutral but polarizable
particles suspended in a liquid medium experience a net movement due to a force …

Investigation of Dielectrophoretic Microfluidic Trap System for Separation and Parallel Analysis of Single Particles

TJ Kwak - 2019 - dc.uwm.edu
Separation and identification of single molecules and particles based on their chemical,
biochemical and physical properties are critical in wide range of biomedical applications …

Numerical study on the effect of dielectrophoretic trap geometry for single particle trapping

MRU Rahman, TJ Kwak, JC Woehl, WJ Chang - researchgate.net
Disease diagnosis, gene analysis, drug screening, tissue engineering–all these important
biomedical applications require separation, manipulation, concentration and immobilization …

[PDF][PDF] Dielectrophoretic Corral Trap for Single Particle Trapping and Characterization Technique

TJ Kwak, JC Woehl, WJ Chang - researchgate.net
Materials and Methods: The trapping process is based on behavior of dielectrophoretic force
which is calculated by following equation:< FDEP= 2πr3ƐmRe [fcm]∇| E| 2>. The …

[引用][C] Discussion and Future Work