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Stop flow lithography in perfluoropolyether (PFPE) microfluidic channels
Ki Wan Bong
, Jiseok Lee
, Patrick S. Doyle
*
*
Corresponding author for this work
Research output
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Contribution to journal
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Article
›
peer-review
28
Citations (Scopus)
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Keyphrases
Biomedical Engineering
10%
Complex Geometry
10%
Current Range
10%
Elastomer
10%
Flow Channel
10%
Fluorinated
10%
Fluoroelastomer
10%
Lithographic Performance
10%
Lithography Process
10%
Lubrication Layer
10%
Microfluidic Channel
100%
Microfluidic Device
10%
Microfluidic Flow
10%
Microfluidic-based
10%
Multifunctional Particles
20%
Optical Transparency
10%
Organic Solvents
20%
Oxygen Permeability
10%
Particle Dimensions
10%
Particle Synthesis
10%
Perfluoropolyether
100%
Polydimethylsiloxane
60%
Precursor Material
10%
Rapid Prototyping
10%
Soft Lithography
10%
Stop-flow Lithography
100%
Synthesis Methods
10%
Engineering
Anisotropic
20%
Biomedical Engineering
10%
Elastomer
20%
Flow Channel
10%
Lithography
100%
Microelectromechanical System
10%
Microfluidic Channel
100%
Microfluidic Device
10%
Optical Transparency
10%
Oxygen Permeability
10%
Polydimethylsiloxane
60%
Precursor Material
10%
Rapid Prototyping
10%
Soft Lithography
10%
Synthesis Method
10%
Chemical Engineering
Elastomer
18%
Lithography
100%
Microelectromechanical System
9%
Polydimethylsiloxane
54%
Material Science
Elastomer
18%
Lithography
100%
Lubrication
9%
Microelectromechanical System
9%
Organic Solvents
18%
Particle Synthesis
9%
Rapid Prototyping
9%