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Oriented Attachment and Nonclassical Formation in Iron Oxides
Jennifer A. Soltis,
Lee Penn
Chemistry (Twin Cities)
Research output
:
Chapter in Book/Report/Conference proceeding
›
Chapter
10
Scopus citations
Overview
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Dive into the research topics of 'Oriented Attachment and Nonclassical Formation in Iron Oxides'. Together they form a unique fingerprint.
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Earth and Planetary Sciences
Crystal Growth
100%
Iron Oxide
100%
Model
50%
Shape
50%
Particle
33%
Growth
33%
Crystal
33%
Research
16%
Time
16%
Environment
16%
Area
16%
Category
16%
pH
16%
Behavior
16%
Condition
16%
Knowledge
16%
Prediction
16%
Surface Area
16%
Texture
16%
Heavy Metal
16%
Recrystallization
16%
Plane
16%
Nucleation
16%
Aggregation
16%
Edge Dislocation
16%
Additive
16%
Crystal Morphology
16%
Chemistry
Crystal Growth
100%
Iron Oxide
100%
Chemical Kinetics Characteristics
28%
Shape
28%
Time
14%
Environment
14%
Nanoparticle
14%
Aggregation
14%
Suspension
14%
Redox Reactions
14%
Surface Area
14%
Ionic Strength
14%
Reaction Condition
14%
Stacking Fault
14%
Edge Dislocation
14%
Crystal Morphology
14%
Crystalline Texture
14%
Heavy Metal
14%
Recrystallization
14%
Crystal Nucleation
14%
Crystal Twinning
14%
Chemical Additive
14%
Biochemistry, Genetics and Molecular Biology
Iron
100%
Crystallization
100%
Crystal
42%
Dynamics
28%
Growth
28%
Kinetics
28%
Time
14%
Aptitude
14%
Morphology
14%
Comprehension
14%
Suspension
14%
pH
14%
Stacking Fault
14%
Oxidation Reduction Reaction
14%
Nucleation
14%
Ionic Strength
14%
Dislocation
14%
Accessible Surface Area
14%