Mixing two liquids on a microfluidic chip is notoriously hard because the small dimensions and velocities on the chip effectively prevent turbulence. We present a topological mixing scheme that exploits the laminarity of the flow to repeatedly fold the flow and exponentially increase the concentration gradients to obtain fast and efficient mixing by diffusion. It is based on helical flow channels with opposite chiralities that split, rotate, and recombine the fluid stream in a topology reminiscent of a series of Möbius bands. This geometry is realized in a simple six-stage, two-layer elastomer structure with a footprint of 400 μm×300 μm400μm×300μm per stage that mixes two solutions efficiently at Reynolds numbers between 0.1 and 2. This rep...
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. Computational fluid dynamics modeling at R...
Background: Effective micromixers represent essential components for micro total analysis systems or...
One of the most promising way to exploit microfluidic systems is as microreactors. A microreactor ca...
Generally, microchannels can be defined as channels having dimensions in the range of 1 µm to 1mm. T...
It is difÞcult to mix solutions in microchannels. Under typical operating conditions, ßows in these ...
Most efficient micro-mixers proposed in the last decade are based on pressure-driven flows that incl...
An essential requirement for any practical fully integrated lab-on-a-chip device is the ability to ...
Mixing of fluids at the microscale poses a variety of challenges, many of which arise from the fact ...
Mixing in microsystems, combining alternate flow with obstacles, is studied by numerical methods. Si...
One of the most promising way to exploit microfluidic systems is as microreactors. A microreactor ca...
Rapid transport of heat and mass is required in many industrial processes. Mixing is a fundamental i...
We present a novel mixing principle for centrifugal microfluidic platforms. Siphon structures are de...
Slow cross-stream mixing in micro-fluidic devices poses a significant challenge in realising efficie...
In recent years, topological concepts have yielded valuable insights into the long standing problem ...
We explore numerically the feasibility of enhancing the mixing capability of microchannels by employ...
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. Computational fluid dynamics modeling at R...
Background: Effective micromixers represent essential components for micro total analysis systems or...
One of the most promising way to exploit microfluidic systems is as microreactors. A microreactor ca...
Generally, microchannels can be defined as channels having dimensions in the range of 1 µm to 1mm. T...
It is difÞcult to mix solutions in microchannels. Under typical operating conditions, ßows in these ...
Most efficient micro-mixers proposed in the last decade are based on pressure-driven flows that incl...
An essential requirement for any practical fully integrated lab-on-a-chip device is the ability to ...
Mixing of fluids at the microscale poses a variety of challenges, many of which arise from the fact ...
Mixing in microsystems, combining alternate flow with obstacles, is studied by numerical methods. Si...
One of the most promising way to exploit microfluidic systems is as microreactors. A microreactor ca...
Rapid transport of heat and mass is required in many industrial processes. Mixing is a fundamental i...
We present a novel mixing principle for centrifugal microfluidic platforms. Siphon structures are de...
Slow cross-stream mixing in micro-fluidic devices poses a significant challenge in realising efficie...
In recent years, topological concepts have yielded valuable insights into the long standing problem ...
We explore numerically the feasibility of enhancing the mixing capability of microchannels by employ...
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. Computational fluid dynamics modeling at R...
Background: Effective micromixers represent essential components for micro total analysis systems or...
One of the most promising way to exploit microfluidic systems is as microreactors. A microreactor ca...