Transport and mixing of minute amounts of biological fluids are significantly important in lab-on-a-chip devices. It has been shown that the electrothermal technique is a suitable candidate for applications involving high-conductivity biofluids, such as blood, saliva, and urine. Here, we introduce a double-array AC electrothermal (ACET) device consisting of two opposing microelectrode arrays, which can be used for simultaneous mixing and pumping. First, in a 2D simulation, an optimum electrode-pair configuration capable of achieving fast transverse mixing at a microfluidic channel cross-section is identified by comparing different electrode geometries. The results show that by adjusting the applied voltage pattern and position of the asymme...
In recent decades, microfluidics and nanofluidics have risen to the forefront of innovation and tech...
Electrokinetics involves the study of liquid or particle motion under the action of an electric fiel...
In this study, we make use of the AC field-effect flow control on induced-charge electroosmosis (ICE...
Although there exist tremendous needs for on-chip biofluid delivery, research in this field has yiel...
Efficient pumping of whole blood is an essential task in biomedical engineering, especially for poin...
Electrokinetics based microfluidic systems are potentially promising for lab-on-a-chip applications ...
ABSTRACT AC electrothermal effect generates temperature gradients in the fluids, consequently induci...
Interdigitated electrodes are used in electrokinetic lab-on-a-chip devices for dielectrophoretic tra...
Microfluid mixing is an essential process in chemical analysis, drug test, and nanoparticle synthesi...
Electrokinetic pumps are attractive for portable and flexible microfluidic analysis systems, since t...
Microfluidic platforms capable of complex on-chip processing and liquid handling enable a wide varie...
Microelectrode arrays are increasingly used in a wide variety of situations in the medical device se...
AC Electrokinetics (ACEK) has attracted much research interest for microfluidic manipulation for the...
The applications of electrokinetics in the development of microfluidic devices have been widely attr...
[[abstract]]A novel ac electrokinetic microfluidic driver based on alternating current electro-osmos...
In recent decades, microfluidics and nanofluidics have risen to the forefront of innovation and tech...
Electrokinetics involves the study of liquid or particle motion under the action of an electric fiel...
In this study, we make use of the AC field-effect flow control on induced-charge electroosmosis (ICE...
Although there exist tremendous needs for on-chip biofluid delivery, research in this field has yiel...
Efficient pumping of whole blood is an essential task in biomedical engineering, especially for poin...
Electrokinetics based microfluidic systems are potentially promising for lab-on-a-chip applications ...
ABSTRACT AC electrothermal effect generates temperature gradients in the fluids, consequently induci...
Interdigitated electrodes are used in electrokinetic lab-on-a-chip devices for dielectrophoretic tra...
Microfluid mixing is an essential process in chemical analysis, drug test, and nanoparticle synthesi...
Electrokinetic pumps are attractive for portable and flexible microfluidic analysis systems, since t...
Microfluidic platforms capable of complex on-chip processing and liquid handling enable a wide varie...
Microelectrode arrays are increasingly used in a wide variety of situations in the medical device se...
AC Electrokinetics (ACEK) has attracted much research interest for microfluidic manipulation for the...
The applications of electrokinetics in the development of microfluidic devices have been widely attr...
[[abstract]]A novel ac electrokinetic microfluidic driver based on alternating current electro-osmos...
In recent decades, microfluidics and nanofluidics have risen to the forefront of innovation and tech...
Electrokinetics involves the study of liquid or particle motion under the action of an electric fiel...
In this study, we make use of the AC field-effect flow control on induced-charge electroosmosis (ICE...