Passive particle manipulation using inertial and elasto-inertial microfluidics have received substantial interest in recent years and have found various applications in high throughput particle sorting and separation. For separation applications, elasto-inertial microfluidics has thus far been applied at substantial lower flow rates as compared to inertial microfluidics. In this work, we explore viscoelastic particle focusing and separation in spiral channels at two orders of magnitude higher Reynolds numbers than previously reported. We show that the balance between dominant inertial lift force, dean drag force and elastic force enables stable 3D particle focusing at dynamically high Reynolds numbers. Using a two-turn spiral, we show that ...
Inertial focusing is a microfluidic based separation and concentration technology that has expanded ...
Size-based particle separation using inertial microfluidics in spiral channels has been well studied...
Label-free separation of target particles or cells in a continuous flow is a crucial process in many...
Passive particle manipulation using inertial and elasto-inertial microfluidics have received substan...
Efficient and reliable manipulation of biological particles is crucial in medical diagnosis and chem...
The paper reports a new method for three-dimensional observation of the location of focused particle...
Various mechanisms of different designs have emerged for the purpose of microparticle separation and...
Viscoelasticity-induced particle migration has recently received increasing attention due to its abi...
In this paper, a novel microfluidic device for sheathless particle focusing and separation in viscoe...
Microfluidic separation of particles has been implemented using a variety of force fields. We demons...
Microfluidic techniques are effective tools for precise manipulation of particles and cells, whose e...
Microfluidic techniques are effective tools for precise manipulation of particles and cells, whose e...
AbstractWe present a microfluidic device for focusing and separation applications of large particles...
Microfluidic techniques are effective tools for precise manipulation of particles and cells whose en...
Elasto-inertial migration in non-Newtonian fluids is a rapidly growing field with tremendous potenti...
Inertial focusing is a microfluidic based separation and concentration technology that has expanded ...
Size-based particle separation using inertial microfluidics in spiral channels has been well studied...
Label-free separation of target particles or cells in a continuous flow is a crucial process in many...
Passive particle manipulation using inertial and elasto-inertial microfluidics have received substan...
Efficient and reliable manipulation of biological particles is crucial in medical diagnosis and chem...
The paper reports a new method for three-dimensional observation of the location of focused particle...
Various mechanisms of different designs have emerged for the purpose of microparticle separation and...
Viscoelasticity-induced particle migration has recently received increasing attention due to its abi...
In this paper, a novel microfluidic device for sheathless particle focusing and separation in viscoe...
Microfluidic separation of particles has been implemented using a variety of force fields. We demons...
Microfluidic techniques are effective tools for precise manipulation of particles and cells, whose e...
Microfluidic techniques are effective tools for precise manipulation of particles and cells, whose e...
AbstractWe present a microfluidic device for focusing and separation applications of large particles...
Microfluidic techniques are effective tools for precise manipulation of particles and cells whose en...
Elasto-inertial migration in non-Newtonian fluids is a rapidly growing field with tremendous potenti...
Inertial focusing is a microfluidic based separation and concentration technology that has expanded ...
Size-based particle separation using inertial microfluidics in spiral channels has been well studied...
Label-free separation of target particles or cells in a continuous flow is a crucial process in many...