Enrichment of colloidal particles in continuous flow has not only numerous applications but also poses a great challenge in controlling physical forces that are required for achieving particle enrichment. Here, we for the first time experimentally demonstrate the electrokinetically-driven continuous-flow enrichment of colloidal particles with Joule heating induced temperature gradient focusing (TGF) in a microfluidic convergent-divergent structure. We consider four mechanisms of particle transport, i.e., advection due to electroosmosis, electrophoresis, dielectrophoresis and, and further clarify their roles in the particle enrichment. It is experimentally determined and numerically verified that the particle thermophoresis plays dominant ro...
We show that thermophoresis, i.e., mass flow driven by thermal gradients, can be used to drive parti...
Microfluidic devices have been increasingly used for diverse particle manipulations in various chemi...
We show that thermophoresis, i.e., mass flow driven by thermal gradients, can be used to drive parti...
Enrichment of colloidal particles in continuous flow has not only numerous applications but also pos...
Insulator-based dielectrophoresis (iDEP) exploits in-channel hurdles and posts etc. to create electr...
Insulator-based dielectrophoresis (iDEP) exploits the electric field gradients formed around insulat...
This report introduces a novel optically induced AC electrokinetic technique that generates microflu...
In this work, we report an effective microfluidic technique for continuous-flow trapping and localiz...
Microfluidic technology involving multidisciplinary studies including MEMS, chemistry, physics, flui...
The thermodiffusive motion of colloidal particles suspended in aqueous media due to a thermal gradie...
Microfluidics has been developed over the past decade due to its promising applications in biotechno...
Microfluidics has been developed over the past decade due to its promising applications in biotechno...
This article describes the engineering development of a continuous-flow, selective particle filter/c...
Microfluidic manipulation of particulate matters has found its applications in cell handling, virus ...
We show that thermophoresis, i.e., mass flow driven by thermal gradients, can be used to drive parti...
We show that thermophoresis, i.e., mass flow driven by thermal gradients, can be used to drive parti...
Microfluidic devices have been increasingly used for diverse particle manipulations in various chemi...
We show that thermophoresis, i.e., mass flow driven by thermal gradients, can be used to drive parti...
Enrichment of colloidal particles in continuous flow has not only numerous applications but also pos...
Insulator-based dielectrophoresis (iDEP) exploits in-channel hurdles and posts etc. to create electr...
Insulator-based dielectrophoresis (iDEP) exploits the electric field gradients formed around insulat...
This report introduces a novel optically induced AC electrokinetic technique that generates microflu...
In this work, we report an effective microfluidic technique for continuous-flow trapping and localiz...
Microfluidic technology involving multidisciplinary studies including MEMS, chemistry, physics, flui...
The thermodiffusive motion of colloidal particles suspended in aqueous media due to a thermal gradie...
Microfluidics has been developed over the past decade due to its promising applications in biotechno...
Microfluidics has been developed over the past decade due to its promising applications in biotechno...
This article describes the engineering development of a continuous-flow, selective particle filter/c...
Microfluidic manipulation of particulate matters has found its applications in cell handling, virus ...
We show that thermophoresis, i.e., mass flow driven by thermal gradients, can be used to drive parti...
We show that thermophoresis, i.e., mass flow driven by thermal gradients, can be used to drive parti...
Microfluidic devices have been increasingly used for diverse particle manipulations in various chemi...
We show that thermophoresis, i.e., mass flow driven by thermal gradients, can be used to drive parti...