2007
DOI: 10.1016/j.sna.2007.03.013
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Massively parallel microfluidic pump

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Cited by 13 publications
(8 citation statements)
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“…Linear current-voltage dependencies and electroosmotic velocity linearly proportional to the driving force were observed. Similar results were obtained by Yairi and Richter [47] in a large array of parallel submicrometer channels (0.7 × 0.7 × 30 µm). Nonlinear current-voltage characteristics are typically exhibited by compact cation-exchange membranes [49].…”
Section: Discussionsupporting
confidence: 88%
See 1 more Smart Citation
“…Linear current-voltage dependencies and electroosmotic velocity linearly proportional to the driving force were observed. Similar results were obtained by Yairi and Richter [47] in a large array of parallel submicrometer channels (0.7 × 0.7 × 30 µm). Nonlinear current-voltage characteristics are typically exhibited by compact cation-exchange membranes [49].…”
Section: Discussionsupporting
confidence: 88%
“…The current-voltage characteristics of materials with pores of a larger diameter were reported, e.g., in [46][47][48]. The authors [46,48] studied electroosmotic flow in silica columns packed with silica particles of micrometer diameters.…”
Section: Discussionmentioning
confidence: 99%
“…The release of bFGF was regulated at a rate of 40 ng/day for duration of four weeks. Yairi and Richter [ 86 ] developed an EO micropump based on voltage control. The flow rate of 0.054 mL/min and pressure of 5.5 kPa were achieved.…”
Section: Micropumpsmentioning
confidence: 99%
“…In this case, the signal to the electrodes was provided by an alternating current generator (FG-7002C, EZ Digital) and amplifier (PZD 700, Trek), and was monitored with an oscilloscope and a digital voltmeter. Yairi and Richter described a voltage-controlled pump based on EOF capable of generating both high flow rates and high pressures [194]. The pump consisted of approximately one half-million microchannels and was able to produce pressures of 5.5 kPa/V and flow rate of 0.054 mL/min/V/cm 2 .…”
Section: - Instrumentationmentioning
confidence: 99%