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Escape from textured adsorbing surfaces
Yuval Scher
*
,
Shlomi Reuveni
, Denis S. Grebenkov
*
Corresponding author for this work
School of Chemistry
CNRS
Research output
:
Contribution to journal
›
Article
›
peer-review
4
Scopus citations
Overview
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Keyphrases
Escape Time
100%
Adsorption
66%
Surface Topography
33%
Joint Effect
33%
Probability Density Function
33%
Entrapment
33%
Monte Carlo Simulation
33%
Analytical Expression
33%
Surface Texture
33%
Universal Scaling Law
33%
Adsorbate
33%
Equilibrium Constant
33%
Effective Description
33%
One-dimensional Diffusion
33%
Escape Dynamics
33%
Deep Cavity
33%
Stickiness
33%
Desorption Rate
33%
Scientific Domain
33%
Technological Domain
33%
Intermediate Depth
33%
Sticky Particles
33%
Narrow Cavity
33%
High-precision Prediction
33%
Chemistry
Desorption
100%
Monte Carlo Method
100%
Topography
100%
Equilibrium Constant
100%
Scaling Law
100%
Material Science
Density
100%
Desorption
100%
Adsorbate
100%
Surface Topography
100%
Physics
Desorption
100%
Monte Carlo Method
100%
Probability Theory
100%
Earth and Planetary Sciences
Confining
100%
Scaling Law
50%
Probability Density Function
50%
Joint Effect
50%
Desorption
50%
Chemical Engineering
Desorption
100%
Scaling Law
100%