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Suppressing the coffee-ring effect of colloidal droplets by dispersed cellulose nanofibers
by
Hanasaki, Itsuo
, Ooi, Yuto
, Mizumura, Daiki
, Matsuda, Yu
in
20 Organic and soft materials (colloids, liquid crystals, gel, polymers)
/ 306 Thin film / Coatings
/ cellulose
/ Coffee ring
/ colloid
/ drop
/ ink
/ mesoscale
/ nanofiber
/ Organic and Soft Materials (Colloids, Liquid Crystals, Gel, Polymers)
/ particle
/ soft matter
2017
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Suppressing the coffee-ring effect of colloidal droplets by dispersed cellulose nanofibers
by
Hanasaki, Itsuo
, Ooi, Yuto
, Mizumura, Daiki
, Matsuda, Yu
in
20 Organic and soft materials (colloids, liquid crystals, gel, polymers)
/ 306 Thin film / Coatings
/ cellulose
/ Coffee ring
/ colloid
/ drop
/ ink
/ mesoscale
/ nanofiber
/ Organic and Soft Materials (Colloids, Liquid Crystals, Gel, Polymers)
/ particle
/ soft matter
2017
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
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Suppressing the coffee-ring effect of colloidal droplets by dispersed cellulose nanofibers
by
Hanasaki, Itsuo
, Ooi, Yuto
, Mizumura, Daiki
, Matsuda, Yu
in
20 Organic and soft materials (colloids, liquid crystals, gel, polymers)
/ 306 Thin film / Coatings
/ cellulose
/ Coffee ring
/ colloid
/ drop
/ ink
/ mesoscale
/ nanofiber
/ Organic and Soft Materials (Colloids, Liquid Crystals, Gel, Polymers)
/ particle
/ soft matter
2017
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Suppressing the coffee-ring effect of colloidal droplets by dispersed cellulose nanofibers
Journal Article
Suppressing the coffee-ring effect of colloidal droplets by dispersed cellulose nanofibers
2017
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Overview
We report that the addition of a small amount of cellulose nanofibers (CNFs) into an aqueous dispersion of colloidal particles suppresses the coffee-ring effect when the dispersion dries on a solid substrate, as revealed by the computational analysis of experimental time-series images and by particle image velocimetry. The addition of CNFs is much more effective than the increase of colloidal particle concentration at the same weight percentage; it is also more environment friendly than the use of typical molecular surfactants. This finding is promising for the fabrication of metamaterials from colloidal dispersions and for ink printing in electronics, where CNFs can also serve as a substrate for flexible devices.
Publisher
Taylor & Francis,Taylor & Francis Ltd,Taylor & Francis Group
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