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CP-MAS NMR and in-situ FTIR study of an AlN surface reactivity
S. A. Monie
,
D. J. Aurentz
, C. G. Pantano
Division of Science (Berks)
Materials Science and Engineering
Materials Research Institute (MRI)
Research output
:
Contribution to journal
›
Conference article
›
peer-review
2
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Scopus citations
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Dive into the research topics of 'CP-MAS NMR and in-situ FTIR study of an AlN surface reactivity'. Together they form a unique fingerprint.
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Keyphrases
Nitrides
100%
Surface Reactivity
100%
MAS NMR
100%
Infrared Study
100%
Cross-polarization Magic Angle Spinning
100%
In Situ Fourier Transform Infrared
100%
Surface Layer
50%
High Surface Area
33%
AlOOH
33%
Fourier Transform Infrared Spectroscopy (FT-IR)
16%
Hydrolysis
16%
Sol-gel
16%
Technology Development
16%
Surface Sites
16%
In Situ Fourier Transform Infrared Spectroscopy
16%
Reaction Products
16%
Nitridation
16%
Nuclear Magnetic Resonance Experiment
16%
Chemical Shift
16%
Al3+
16%
Molecular Species
16%
Aluminum Hydroxide
16%
27Al
16%
Octahedral Coordination
16%
Tetrahedral Coordination
16%
Hydrolytic Stability
16%
Self-supporting
16%
Pseudoboehmite
16%
Material Science
Aluminum Nitride
100%
Nuclear Magnetic Resonance
100%
Cross Polarization Magic Angle Spinning
100%
Surface (Surface Science)
100%
Film
25%
Sol-Gel
12%
Fourier Transform Infrared Spectroscopy
12%
Nitriding
12%
Packaging Material
12%
Enzymatic Hydrolysis
12%
Engineering
Nitride
100%
Nuclear Magnetic Resonance
100%
Fourier Transform
100%
Surface Layers
37%
High Surface Area
25%
Surface Site
12%
Site Cation
12%
Hydrolytic Stability
12%
Packaging Material
12%
FTIR Spectroscopy
12%
Technological Development
12%
Electronic Packaging
12%