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Predicting crystal growth via a unified kinetic three-dimensional partition model
Michael W. Anderson
, James T. Gebbie-Rayet
, Adam R. Hill
, Nani Farida
, Martin P. Attfield
,
Pablo Cubillas
, Vladislav A. Blatov
, Davide M. Proserpio
, Duncan Akporiaye
, Bjornar Arstad
, Julian D. Gale
SHLS Life Sciences
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peer-review
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Keyphrases
Three-dimensional (3D)
100%
Crystal Growth
100%
Partition Model
100%
Crystal Type
60%
Zeolite
20%
Crystal Surface
20%
Developing Model
20%
Wide Scope
20%
Urea
20%
Unified Model
20%
Metal-organic Frameworks (MOFs)
20%
Molecular Scale
20%
Surface Topology
20%
Crystal Habit
20%
Defected Ground Structure
20%
Monte Carlo Algorithm
20%
Crystal System
20%
Scanning Probe
20%
Voronoi Polyhedron
20%
Cystine
20%
Growth Needs
20%
Modern Materials
20%
Engineering
Molecular Scale
100%
Defect Structure
100%
Crystal Structure
100%
Pharmacology, Toxicology and Pharmaceutical Science
Calcium Carbonate
100%
Cystine
100%
Chemical Engineering
Calcite
100%
Material Science
Cystine
20%
Earth and Planetary Sciences
Crystal Defect
20%