electrothermal flow
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2021 ◽  
Vol 6 (9) ◽  
Author(s):  
Amirreza Malekanfard ◽  
Zhijian Liu ◽  
Hui Zhao ◽  
Yongxin Song ◽  
Xiangchun Xuan

Lab on a Chip ◽  
2021 ◽  
Author(s):  
Haizhen Sun ◽  
Yukun Ren ◽  
Ye Tao ◽  
Tianyi Jiang ◽  
Hongyuan Jiang

Cell/particle concentration inside droplets holds the great potential in extending lab-in-a-droplet applications typically ranging from biological and chemical assays. Herein, we present an universal, massive and versatile technique, namely alternating...


2020 ◽  
Vol 59 (27) ◽  
pp. 12514-12524
Author(s):  
Haizhen Sun ◽  
Yukun Ren ◽  
Ye Tao ◽  
Tianyi Jiang ◽  
Hongyuan Jiang

Sensors ◽  
2020 ◽  
Vol 20 (11) ◽  
pp. 3242 ◽  
Author(s):  
Seungjun Lee ◽  
Seong Min Roh ◽  
Eunji Lee ◽  
Yejin Park ◽  
Byung Chul Lee ◽  
...  

Since separation of target biomolecules is a crucial step for highly sensitive and selective detection of biomolecules, hence, various technologies have been applied to separate biomolecules, such as deoxyribonucleic acid (DNA), protein, exosome, virus, etc. Among the various technologies, dielectrophoresis (DEP) has the significant advantage that the force can provide two different types of forces, attractive and repulsive DEP force, through simple adjustment in frequency or structure of microfluidic chips. Therefore, in this review, we focused on separation technologies based on DEP force and classified various separation technologies. First, the importance of biomolecules, general separation methods and various forces including DEP, electrophoresis (EP), electrothermal flow (ETF), electroosmosis (EO), magnetophoresis, acoustophoresis (ACP), hydrodynamic, etc., was described. Then, separating technologies applying only a single DEP force and dual force, moreover, applying other forces simultaneously with DEP force were categorized. In addition, advanced technologies applying more than two different kinds of forces, namely complex force, were introduced. Overall, we critically reviewed the state-of-the-art of converged various forces for detection of biomolecules with novelty of DEP.


Author(s):  
Jianlong Ji ◽  
Jingxiao Wang ◽  
Liu Wang ◽  
Qiang Zhang ◽  
Qianqian Duan ◽  
...  

Negative dielectrophoresis is widely used in cell localization for long-term observations such as the impedance analysis, in vivo drug screening, and cell patterns. However, the coupling effect of AC electrokinetics, including negative dielectrophoresis, AC electroosmosis, and electrothermal flow is still unclear. This work investigated cell localization based on the dynamic-coupling of dielectrophoresis, AC electroosmosis, and electrothermal flow. A two-dimensional finite element model that consisted of interdigitated array electrodes was established. The effects of system parameters on the capture efficiency were investigated, when the medium conductivity was in the range of 0.001–1 S/m. The selection of the medium conductivity is suggested to be the first step of the experiment design. Then, the choice of AC frequency and AC amplitude requires balancing the effects of transmembrane potential and temperature rise on cell viability. Besides, particular electrode spacing is evidenced to be only efficient for a specific cell diameter. Thus, the electrode spacing of the microfluidic chip needs to be optimized according to the cell's diameter.


2020 ◽  
Vol 92 (11) ◽  
pp. 7762-7769 ◽  
Author(s):  
Anil Koklu ◽  
Jason Giuliani ◽  
Carlos Monton ◽  
Ali Beskok

2019 ◽  
Vol 91 (19) ◽  
pp. 12492-12500 ◽  
Author(s):  
Anil Koklu ◽  
Assaad El Helou ◽  
Peter E. Raad ◽  
Ali Beskok

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