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Magnetic Resonance Studies of Thermally Modified Wood
Hanne Sivonen
, Sirkka L. Maunu
, Franciska Sundholm
, Saila Jämsä
, Pertti Viitaniemi
VTT Technical Research Centre of Finland
University of Helsinki
VTT (former employee or external)
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
302
Citations (Scopus)
Overview
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Keyphrases
13C NMR Spectroscopy
50%
Aromatics
50%
Biological Durability
50%
Carbohydrate Fractions
50%
Cellulose Crystallinity
50%
Chemical Structure
50%
Condensation Reaction
50%
Deacetylation
50%
Degree of Crystallinity
50%
Dimensional Stability
50%
Electron Spin Resonance
50%
Electron Spin Resonance Spectroscopy
50%
Equilibrium Moisture Content
50%
Free Radicals
50%
Heat Treatment Temperature
50%
Hemicellulose
50%
Lignin
100%
Lignin Fractions
50%
Magnetic Resonance Techniques
100%
Methoxyl Content
50%
Pinus Sylvestris
50%
Radical Formation
50%
Solid-state NMR
50%
Stable Free Radical
50%
Thermal Treatment
50%
Thermal Wood Modification
50%
Thermally Modified Wood
100%
Wood
50%
Wood Components
50%
Wood Material
50%
Wood Samples
50%
Chemistry
13C Cross Polarization Magic Angle Spinning
33%
Cellulose
33%
Condensation Reaction
33%
Crystallinity
33%
Deacetylation
33%
Electron Spin Resonance Signal
33%
EPR Spectroscopy
33%
formation
100%
Heat Treatment
33%
Hemicellulose
33%
Magnetic Resonance
100%
NMR Spectroscopy
33%
Radical (Chemistry)
66%
Radical Addition
33%
Solid-State NMR
33%
stability
66%
INIS
aromatics
16%
carbohydrates
16%
carbon 13
16%
cellulose
16%
durability
16%
electron spin resonance
33%
equilibrium
16%
free radicals
33%
heat treatments
16%
hemicellulose
16%
lignin
50%
magnetic resonance
100%
modifications
16%
moisture
16%
nmr
33%
pines
16%
signals
16%
solids
16%
spectroscopy
33%
stability
33%
wood
100%
Material Science
Electron Paramagnetic Resonance Spectroscopy
66%
Lignin
100%
Nuclear Magnetic Resonance
33%
Nuclear Magnetic Resonance Spectroscopy
33%
Structure (Composition)
33%
Chemical Engineering
Condensation Reaction
100%