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Droplet evaporation on functional surfaces
A. Alperen Günay
, Marisa Gnadt
, Soumyadip Sett
, Junho Oh
,
Nenad Miljkovic
Mechanical Science and Engineering
Electrical and Computer Engineering
Materials Research Lab
Institute for Sustainability, Energy, and Environment
Research output
:
Contribution to journal
›
Conference article
›
peer-review
Overview
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Keyphrases
Evaporation Rate
100%
Functional Surface
100%
Droplet Evaporation
100%
Droplet Size
50%
Elevated Temperature
25%
Advancing Contact Angle
25%
Dynamic Curvature
25%
Surface Temperature
25%
Binary Mixture
25%
Mass Transfer
25%
Man-made
25%
Natural Processes
25%
Microdroplet
25%
Water Evaporation
25%
Surface Functionality
25%
Thermocapillarity
25%
Gas Dynamics
25%
Temperature Conditions
25%
Mixture Dynamics
25%
Transient Method
25%
Sessile Droplet
25%
Dispenser
25%
Evaporation Kinetics
25%
Internal Flow
25%
External Flow
25%
Base Radius
25%
Three-phase Contact Line
25%
Addition Frequency
25%
Different Substrate Temperature
25%
Dynamic Contact Line
25%
Moving Contact Line
25%
Engineering
Transients
100%
Piezoelectric
100%
Droplet Size
100%
Contact Line
100%
Microscale
50%
Temperature Condition
50%
Elevated Temperature
50%
Evaporation Rate
50%
Natural Process
50%
Classical Method
50%
Substrate Temperature
50%
Advancing Contact Angle
50%
Internal Flow
50%
External Flow
50%
Binary Mixture
50%
Gas Dynamics
50%