M9_Microfluidics_for_CNT
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The droplets in contact coalesce when exposed to DEP filed.
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University of JyväskyläKeywords
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M8_Microfluidics_for_CNT
Borovsky, Jan (University of Jyväskylä, 2018)A comparation of two sorting strategies. While the shallow channel guides the droplets more precisely to the sorting point, the confined droplets are more vulnerable to coalescence and break-up. The deep channel lowers the ... -
M7_Microfluidics_for_CNT
Borovsky, Jan (University of Jyväskylä, 2018)A comparation of two designs of a droplet trap. While the droplet exchange is mediated by direct droplet contact in the symmetric design, a short continuous phase plug mediated the droplet exchange in the asymmetric design. -
M10_Microfluidics_for_CNT
Borovsky, Jan (University of Jyväskylä, 2018)Droplets are preferentially directed to the channel with higher flow rate in the passive sorting junction. When the droplets are exposed to DEP field, the DEP force pull them to the narrower channel. -
M11_Microfluidics_for_CNT
Borovsky, Jan (University of Jyväskylä, 2018)The subtle solubility of water in n-decane causes leaking of the droplet content. If the n-decane flows by static droplets, it carries the water slowly away up to the total disappearance of the droplets. -
M12_Microfluidics_for_CNT
Borovsky, Jan (University of Jyväskylä, 2018)The droplets exchanging in the trap causes visible scattering of the laser beam focused on the droplet. The obvious change of laser light intensity can be used for detection of droplet exchange.