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Evaporation of alcohol droplets on surfaces in moist air
Lisong Yang
, Amir A. Pahlavan
,
Howard A. Stone
, Colin D. Bain
Mechanical & Aerospace Engineering
Omenn-Darling Bioengineering Institute
Chemical & Biological Engineering
High Meadows Environmental Institute
Lewis-Sigler Institute for Integrative Genomics
Molecular Biology
Princeton Materials Institute
Research output
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Contribution to journal
›
Article
›
peer-review
21
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Scopus citations
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Keyphrases
Moist Air
100%
Drying Dynamics
100%
Printing Ink
100%
Alcohol Droplet
100%
Alcohol
50%
Flow Field
50%
Dynamic Features
50%
Compositional Gradient
50%
Evaporation-condensation
50%
Average Flux
50%
Water-rich
50%
Pancake
50%
Morphological Characteristics
50%
Surface Tension Gradient
50%
Water Vapor Condensation
50%
Drying Behavior
50%
High Humidity
50%
Isopropyl Alcohol
50%
Droplet Evaporation
50%
Non-monotonic Change
50%
Ambient Environment
50%
Drying Time
50%
Lubrication Model
50%
Coffee-ring Effect
50%
Water Condensation
50%
Ambient Humidity
50%
Controlled Humidity
50%
Alcohol Use
50%
Alcohol-based
50%
Sanitizing
50%
Alcohol-based Disinfectant
50%
Rim Instability
50%
Disinfectant Spray
50%
Vapor Concentration Field
50%
Picoliter Droplet
50%
Relative Humidity
50%
Large Spatial
50%
Material Science
Film
100%
Morphology
100%
Surface Tension
100%
Water Vapor
100%
Earth and Planetary Sciences
Relative Humidity
100%
Morphology
50%
Flow Distribution
50%
Isopropyl Alcohol
50%
Tension Surface
50%
Water Vapor
50%
Chemistry
Condensation
100%
formation
100%
Water Vapor
50%
Interfacial Tension
50%
Food Science
Sanitizing
100%