In this study, we report on the developing of a continuous microfluidic reaction device that allows selective activation of polyelectrolyte-surfactant chemical signals in microflows and switches them between multiple outputs. A numerical model was developed for convection-diffusion reaction processes in reactive polymer-colloid microfluidic flows. Matlab scripts and scaling laws were developed for this model to predict reaction initiation and completion conditions in microfluidic devices and the location of the reaction front. The model allows the optimization of microfluidic device geometry and the setting of operation modes that provide release of the reaction product through specific outputs. Representing a chemical signal, polyelectroly...
Microfluidics is an expanding research field that lies at the interface of engineering, physics, che...
Microfluidics refers to devices and methods for controlling and manipulating fluid flows at length s...
In the present work, a novel droplet-based microfluidic scheme is developed to perform chemical reac...
In microfluidics, a variety of platforms have emerged facilitating various physical effects for mani...
Microfluidics is a great enabling technology for biology, biotechnology, chemistry and general life ...
This thesis describes a study of various aspects of chemical reactions conducted in microfluidic rea...
We present an analysis of concentration switching times in microfluidic devices. The limits of rapid...
<div><p>Microfluidics is a great enabling technology for biology, biotechnology, chemistry and gener...
Microchips: Multistep reactions may be catalyzed by enzymes immobilized on microbeads trapped inside...
Microfluidics provides a powerful technology for both the production of molecular computing componen...
We report a novel strategy for efficiently mixing solutions and carrying out multistep catalytic rea...
The integration of smart stimulus-responsive polymers as functional elements within microfluidic dev...
This work focuses on identifying and prioritizing factors that allow control of the properties of po...
We describe an experimental methodology for the study of chemical self-organization in micropatterne...
This paper describes microfluidic systems that can be used to investigate multiple chemical or bioch...
Microfluidics is an expanding research field that lies at the interface of engineering, physics, che...
Microfluidics refers to devices and methods for controlling and manipulating fluid flows at length s...
In the present work, a novel droplet-based microfluidic scheme is developed to perform chemical reac...
In microfluidics, a variety of platforms have emerged facilitating various physical effects for mani...
Microfluidics is a great enabling technology for biology, biotechnology, chemistry and general life ...
This thesis describes a study of various aspects of chemical reactions conducted in microfluidic rea...
We present an analysis of concentration switching times in microfluidic devices. The limits of rapid...
<div><p>Microfluidics is a great enabling technology for biology, biotechnology, chemistry and gener...
Microchips: Multistep reactions may be catalyzed by enzymes immobilized on microbeads trapped inside...
Microfluidics provides a powerful technology for both the production of molecular computing componen...
We report a novel strategy for efficiently mixing solutions and carrying out multistep catalytic rea...
The integration of smart stimulus-responsive polymers as functional elements within microfluidic dev...
This work focuses on identifying and prioritizing factors that allow control of the properties of po...
We describe an experimental methodology for the study of chemical self-organization in micropatterne...
This paper describes microfluidic systems that can be used to investigate multiple chemical or bioch...
Microfluidics is an expanding research field that lies at the interface of engineering, physics, che...
Microfluidics refers to devices and methods for controlling and manipulating fluid flows at length s...
In the present work, a novel droplet-based microfluidic scheme is developed to perform chemical reac...