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Microfluidic generation of droplets with a high loading of nanoparticles
Jiandi Wan
, Lei Shi
, Bryan Benson
, Matthew J. Bruzek
, John E. Anthony
, Patrick J. Sinko
, Robert K. Prudhomme
, Howard A. Stone
Chemistry (Twin Cities)
Research output
:
Contribution to journal
›
Article
›
peer-review
23
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Scopus citations
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Keyphrases
Nanoparticles
100%
Microfluidics
100%
High Mass Loading
100%
PDMS Devices
100%
Polystyrene Nanoparticles
75%
Particle Concentration
50%
Polystyrene
50%
Clogging
50%
Flow Rate Ratio
50%
Microcapillary
50%
Controlled Generation
50%
Emulsion
25%
High Concentration
25%
Functional Materials
25%
Drop Size Distribution
25%
Colloidal Suspension
25%
Drug Delivery Applications
25%
Colloidal Particles
25%
Colloidal Clusters
25%
Capillary Tube
25%
Drug Carrier
25%
Microfluidic Device
25%
T-junction
25%
Nanoparticle Suspension
25%
Water Flow Rate
25%
Soft Lithography
25%
Microfluidic Technique
25%
Flow-focusing
25%
Glass Capillary
25%
Polystyrene Suspensions
25%
Glass Micro-capillary
25%
Polystyrene Colloid
25%
Direct Encapsulation
25%
Engineering
Nanoparticles
100%
Flow Rate
40%
Flow Velocity
40%
Particle Concentration
20%
Soft Lithography
20%
Colloidal Suspension
20%
Drug Delivery Application
20%
Colloid
20%
Drug Delivery
20%
Colloidal Particle
20%
Drop Size
20%
Capillary Tube
20%
Microfluidic Device
20%
Material Science
Polystyrene
100%
Nanoparticle
100%
Drug Delivery System
28%
Drug Delivery
28%
Lithography
14%
Colloidal Suspension
14%
Functional Material
14%