2013
DOI: 10.1039/c3lc50517k
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Nanotextured superhydrophobic electrodes enable detection of attomolar-scale DNA concentration within a droplet by non-faradaic impedance spectroscopy

Abstract: Label-free, rapid detection of biomolecules in microliter volumes of highly diluted solutions (sub-femtomolar) is of essential importance for numerous applications in medical diagnostics, food safety, and chem-bio sensing for homeland security. At ultra-low concentrations, regardless of the sensitivity of the detection approach, the sensor response time is limited by physical diffusion of molecules towards the sensor surface. We have developed a fast, low cost, non-faradaic impedance sensing method for detecti… Show more

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Cited by 71 publications
(78 citation statements)
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References 43 publications
(92 reference statements)
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“…In addition, as a reference, we analyzed another group of cells that lost their osmoregulation ability due to heat treatment and therefore, are "osmoregulatory dead" (defined as "dead" throughout this work). Overall, we find that the droplet-based impedance sensors (25)(26)(27)(28) can selectively differentiate live vs. dead E. coli cells with 10-15% accuracy (comparable with the colony counting method) in less than 20 min.…”
Section: Significancementioning
confidence: 95%
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“…In addition, as a reference, we analyzed another group of cells that lost their osmoregulation ability due to heat treatment and therefore, are "osmoregulatory dead" (defined as "dead" throughout this work). Overall, we find that the droplet-based impedance sensors (25)(26)(27)(28) can selectively differentiate live vs. dead E. coli cells with 10-15% accuracy (comparable with the colony counting method) in less than 20 min.…”
Section: Significancementioning
confidence: 95%
“…As explained in detail elsewhere (25,28), there is a universal behavior of the sensor signal with respect to the initial droplet volume and total evaporation time. The method only relies on the normalized differential conductance (correlated to the ionic modulation), and therefore, the experimental results are insensitive to evaporation rates.…”
Section: Methodsmentioning
confidence: 99%
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“…This permanent or semi-permanent water repellency is a useful property that is employed to prepare self-cleaning surfaces 7 , microfluidic devices 8 , anti-fouling cell/protein surfaces 9,10 , drag-reducing surfaces 11 , and drug delivery devices [12][13][14][15] . Recently, stimuli-responsive superhydrophobic materials are described where the nonwetted to wetted state is triggered by chemical, physical, or environmental cues (e.g., light, pH, temperature, ultrasound, and applied electrical potential/current) 14,[16][17][18][19][20] , and these materials are finding use for additional applications [21][22][23][24][25] .…”
Section: Introductionmentioning
confidence: 99%